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68179d65be22ee500d53ff54 Card 2

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COLD ROLLED SHEET

Our company has steel products billets, steel products, hot-rolled sheets, cold-drawn sheets, seamless steel pipes, steel bars and other products. EN 10152 has a good reputation in the market, high-quality products, and thoughtful service in the steel industry. EN 10152 has complete specifications, and the products are widely used in aerospace, petrochemical, and construction projects, with low requirements for products, easy processing and low dimensional accuracy requirements. And provide cutting, bending, welding, drilling, and other processing services. EN 10152 equivalent material The EN 10152 standard includes 11 grades. We can provide various grades of steel plates, steel coils, steel bars, structural steels (including special-shaped parts) under the EN 10152 standard in various conventional sizes. Customized processing and services , please send the specific requirements and drawings to the mailbox. After receiving it, we will confirm the plan and reply to you as soon as possible. DIN EN 10152 The DIN EN 10152 standard extends the requirements of DIN EN 10130 to include specific conditions for electrolytically galvanized, cold-rolled flat products. These products offer additional corrosion protection and are widely used in various industrial applications. Technical delivery conditions DIN EN 10152 specifies the technical delivery conditions for electrolytically galvanized, cold-rolled flat products. In addition to the chemical composition and mechanical properties, these conditions also include the requirements for the zinc coating. Chemical composition and zinc coating The basic composition of the steel remains largely unchanged, but an electrolytic zinc coating is applied to increase corrosion protection. The thickness and uniformity of the zinc coating are precisely defined by the standard in order to ensure optimum protection. Mechanical properties The mechanical properties of the galvanized steel largely correspond to those of the base material in accordance with DIN EN 10130. The cold formability and strength are retained despite the additional coating, which expands the application possibilities. Corrosion resistance and surface quality A key advantage of products manufactured in accordance with DIN EN 10152 is their improved corrosion resistance. Electrolytic galvanizing effectively protects the steel against rust and extends the service life of the end product. The surface quality can also vary here and is offered in different finishes to meet specific requirements. FOR MORE DETAIL CONTACT US AT :- www.ladhanimetal.com www.ladhanimetal.in ladhanimetal@gmail.com ladhanimetals@gmail.com LADHANI METAL CORPORATION, MUMBAI, INDIA LADHANI METAL CORPORATION, MUMBAI, INDIA Company Information Ladhani Metal Corporation. We are committed to integrate engineering steel resources in India and serve the global engineering steel market. Our company has more than 32 years of experience in steel researching, production, managing and sales. In the aspect of resources and information, we have established cooperative and stronger relationship with nearly hundred enterprises, either state-owned or private owned in India. What’s more, we have built long, deep and close business relationship with dozens of steel company, Sharing and holding equities with several steel enterprises. Because of the close cooperation with steel companies and our pioneering spirit, which can ensure us stay at the top competition, and ensure our customers get what they really want! FOR MORE DETAIL CONTACT US AT :- ladhanimetal@gmail.com ladhanimetals@gmail.com www.ladhanimetal.in www.ladhanimetal.com LADHANI METAL CORPORATION, MUMABAI, INDIA, AVAILABLE AT FOLLOWING LOCATION :- Adilabad, Agartala, Agra, Ahmedabad, Ahmednagar, Ajmer, Akola , Aligarh , Alipore , Allahabad , Alleppey , Almora , Alwar , Alwaye , Amalapuram , Amaravati , Ambala , Amreli , Amritsar , Anakapalle , Anand , Anantapur , Andhra Pradesh , Anna Road , Arakkonam , Arunachal Pradesh , Asansol , Aska , Assam , Aurangabad , Azamgarh , Bagalkot , Bahraich , Balaghat , Balangir , Balasore , Ballia , Banasanktha , Banda , Bangalore WE EXPORT TO FOLLOWING COUTRIES Switzerland , Afghanistan , Albania , Algeria , Angola , AntiguaandBarbuda , Argentina , Armenia , Aruba , Australia , Austria , Azerbaijan , Bahrain , Bangladesh , Barbados , Belarus , Belgium , Belize , Benin , Bhutan , Bolivia , BosniaandHerzegovina , Botswana , Brazil , Brunei , Bulgaria , BurkinaFaso , Burundi , CaboVerde , Cambodia , Cameroon , Canada , CentralAfricanRepublic , Chad , Chile , China , Colombia , Comoros , Congo , CostaRica , Côted'Ivoire , Croatia , Cyprus , CzechRepublic , Denmark , Djibouti , Dominica , DominicanRepublic , Ecuador , Egypt , ElSalvador , EquatorialGuinea , Eritrea , Eswatini , Ethiopia , Fiji , Finland , France , Gabon , Georgia , Germany , Ghana , Greece , Grenada , Guatemala , Guinea , Guinea-Bissau , Guyana , Haiti , Honduras , HongKong , Hungary

68179d65be22ee500d53ff54 Card 2

product image
COLD ROLLED SHEET

WE LADHANI METAL CORPORATION ARE THE EXPORTER OF EN 10152 DC07 SHEET, PLATE AND COIL QUALITY- DC07 STANDARD- DIN EN 10152 MATERIAL NO.- 1.0898 Super deep drawing grade DC07 according to DIN EN 10152 The DIN EN 10152 standard specifies electrolytically galvanized, cold-rolled steel flat products for cold forming, including the super deep-drawing grade DC07. This standard defines the requirements for the zinc coating and the basic mechanical properties of the base material. DC07, when electrolytically galvanized in accordance with DIN EN 10152, is given an additional corrosion protection layer of zinc. This layer protects the material from oxidative influences and significantly increases the service life of the components made from it. The zinc coating can be applied in various thicknesses, depending on the specific requirements of the application. Typical coating thicknesses range from 5 to 20 µm. The chemical composition and mechanical properties of the base material DC07 remain unchanged after galvanizing and meet the requirements of DIN EN 10130. DC07 therefore retains its exceptional cold formability and mechanical performance. The yield strength, tensile strength and elongation at break also remain in the same range as for non-galvanized DC07. In addition to mechanical performance, the quality of the zinc coating is of central importance. The DIN EN 10152 standard specifies the requirements for the uniformity of the coating, the adhesive strength of the zinc and the surface quality. These requirements ensure that the galvanized products offer high corrosion resistance and an aesthetically pleasing surface. The use of DC07 in accordance with DIN EN 10152 is widespread in the automotive industry, the construction industry and in the manufacture of household appliances, where improved corrosion resistance is required in addition to high formability. Electrolytic galvanizing offers optimum protection here without impairing the excellent mechanical properties of the base material. AVAILABLE AT FOLLOWING LOCATION :- Mumbai,Delhi,Bangalore,Hyderabad,Ahmedabad,Chennai,Kolkata,SuraT,Pune,Jaipur,Lucknow,Kanpur,Nagpur,Indore,Thane,Bhopal,Visakhapatnam,Patna,Vadodara,Ghaziabad,Ludhiana, Agra,Nashik,Faridabad,Meerut,Rajkot,Kalyan,Vasai,Varanasi,Srinagar,Aurangabad,Dhanbad,Amritsar,Allahabad,Ranchi,Haora,Coimbatore,Jabalpur,Gwalior,Vijayawada,Jodhpur,Madurai,Raipur,Kota,Guwahati,Chandigarh,Solapur,Hubli,Bareilly,Moradabad,Gurgaon,Aligarh,Jalandhar,Tiruchirappalli,Bhubaneswar ,Thiruvananthapuram,Bhiwandi,Saharanpur,Gorakhpur, Guntur,Bikaner,Amravati,Noida,Jamshedpur,Bhilai,Warangal,Cuttack,Firozabad,Kochi,Bhavnagar,Dehradun,Durgapur,Asansol,Nanded,Kolapur,Ajmer,Gulbarga,Jamnagar,Ujjain,Loni,Siliguri,Jhansi,Ulhasnagar,Nellore,Jammu,Sangli,Belgaum,Mangalore, Ambattur,Tirunelveli,Malegoan,Gaya,Jalgaon,Udaipur WE EXPORT TO FOLLOWING COUTRIES Switzerland , Afghanistan , Albania , Algeria , Angola , AntiguaandBarbuda , Argentina , Armenia , Aruba , Australia , Austria , Azerbaijan , Bahrain , Bangladesh , Barbados , Belarus , Belgium , Belize , Benin , Bhutan , Bolivia , BosniaandHerzegovina , Botswana , Brazil , Brunei , Bulgaria , BurkinaFaso , Burundi , CaboVerde , Cambodia , Cameroon , Canada , CentralAfricanRepublic , Chad , Chile , China , Colombia , Comoros , Congo , CostaRica , Côted'Ivoire , Croatia , Cyprus , CzechRepublic , Denmark , Djibouti , Dominica , DominicanRepublic , Ecuador , Egypt , ElSalvador , EquatorialGuinea , Eritrea , Eswatini , Ethiopia , Fiji , Finland , France , Gabon , Georgia , Germany , Ghana , Greece , Grenada , Guatemala , Guinea , Guinea-Bissau , Guyana , Haiti , Honduras , HongKong , Hungary , Iceland , Indonesia , Iran , Iraq , Ireland , Israel , Italy , Jamaica , Japan , Jordan , Kazakhstan , Kenya , Kiribati , Kosovo , Kuwait , Kyrgyzstan , Laos , Latvia , Lebanon , Lesotho , Liberia , Libya , Lithuania , Luxembourg , Macau , Madagascar , Malawi , Malaysia , Maldives , Mali , Malta , MarshallIslands , Mauritania , Mauritius , Mexico , Micronesia,FederatedStatesof , Moldova , Mongolia , Montenegro , Morocco , Mozambique , Myanmar , Namibia , Nauru , Netherlands , NewZealand , Nicaragua , Niger , Nigeria , NorthMacedonia , Norway , Oman , Palau , Panama , PapuaNewGuinea , Paraguay , Peru , Philippines , Poland , Portugal , PuertoRico , Qatar , Romania , Russia , Rwanda , SaintKittsandNevis , SaintLucia , SaintVincentandtheGrenadines , Samoa , SanMarino , SãoToméandPríncipe , SaudiArabia , Senegal , Serbia , Seychelles , SierraLeone , Singapore , Slovakia , Slovenia , SolomonIslands , SouthAfrica , SouthKorea , SouthSudan , Spain , SriLanka , Sudan , Suriname , Sweden , Taiwan , Tajikistan , Tanzania , Thailand , TheBahamas , TheGambia , Timor-Leste , Togo , Tonga , TrinidadandTobago , Tunisia , Turkey , Turkmenistan , Tuvalu , Uganda , Ukraine , UnitedArabEmirates , UnitedKingdom , UnitedStates , Uruguay , Uzbekistan , Vanuatu , Venezuela , Vietnam , Yemen , Zambia , Zimbabwe

68179d65be22ee500d53ff54 Card 2

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COLD ROLLED SHEET

WE LADHANI METAL CORPORATION ARE THE SUPPLIER OF EN 10152 DC06 SHEET, PLATE AND COIL QUALITY- DC06 STANDARD- DIN EN 10152 MATERIAL NO.-1.0873 Special deep-drawing grade DC06 according to DIN EN 10152 The DIN EN 10152 standard specifies electrolytically galvanized, cold-rolled flat steel products for cold forming, including the special deep-drawing grade DC06. This standard defines the requirements for the zinc coating and the basic mechanical properties of the base material. DC06, when electrolytically galvanized in accordance with DIN EN 10152, is given an additional corrosion protection layer of zinc. This layer protects the material from oxidative influences and significantly increases the service life of the components made from it. The zinc coating can be applied in various thicknesses, depending on the specific requirements of the application. Typical coating thicknesses range from 5 to 20 µm. The chemical composition and mechanical properties of the base material DC06 remain unchanged even after galvanizing and meet the requirements of DIN EN 10130. DC06 therefore retains its outstanding cold formability and mechanical performance. The yield strength, tensile strength and elongation at break also remain in the same range as for ungalvanized DC06. In addition to mechanical performance, the quality of the zinc coating is of central importance. The DIN EN 10152 standard specifies the requirements for the uniformity of the coating, the adhesive strength of the zinc and the surface quality. These requirements ensure that the galvanized products offer high corrosion resistance and an aesthetically pleasing surface. The use of DC06 in accordance with DIN EN 10152 is widespread in the automotive industry, in the construction industry and in the manufacture of household appliances, where improved corrosion resistance is required in addition to high formability. Electrolytic galvanizing offers optimum protection here without impairing the excellent mechanical properties of the base material. AVAILABLE AT FOLLOWING LOCATION :- Mumbai,Delhi,Bangalore,Hyderabad,Ahmedabad,Chennai,Kolkata,SuraT,Pune,Jaipur,Lucknow,Kanpur,Nagpur,Indore,Thane,Bhopal,Visakhapatnam,Patna,Vadodara,Ghaziabad,Ludhiana, Agra,Nashik,Faridabad,Meerut,Rajkot,Kalyan,Vasai,Varanasi,Srinagar,Aurangabad,Dhanbad,Amritsar,Allahabad,Ranchi,Haora,Coimbatore,Jabalpur,Gwalior,Vijayawada,Jodhpur,Madurai,Raipur,Kota,Guwahati,Chandigarh,Solapur,Hubli,Bareilly,Moradabad,Gurgaon,Aligarh,Jalandhar,Tiruchirappalli,Bhubaneswar ,Thiruvananthapuram,Bhiwandi,Saharanpur,Gorakhpur, Guntur,Bikaner,Amravati,Noida,Jamshedpur,Bhilai,Warangal,Cuttack,Firozabad,Kochi,Bhavnagar,Dehradun,Durgapur,Asansol,Nanded,Kolapur,Ajmer,Gulbarga,Jamnagar,Ujjain,Loni,Siliguri,Jhansi,Ulhasnagar,Nellore,Jammu,Sangli,Belgaum,Mangalore, Ambattur,Tirunelveli,Malegoan,Gaya,Jalgaon,Udaipur WE EXPORT TO FOLLOWING COUTRIES Switzerland , Afghanistan , Albania , Algeria , Angola , AntiguaandBarbuda , Argentina , Armenia , Aruba , Australia , Austria , Azerbaijan , Bahrain , Bangladesh , Barbados , Belarus , Belgium , Belize , Benin , Bhutan , Bolivia , BosniaandHerzegovina , Botswana , Brazil , Brunei , Bulgaria , BurkinaFaso , Burundi , CaboVerde , Cambodia , Cameroon , Canada , CentralAfricanRepublic , Chad , Chile , China , Colombia , Comoros , Congo , CostaRica , Côted'Ivoire , Croatia , Cyprus , CzechRepublic , Denmark , Djibouti , Dominica , DominicanRepublic , Ecuador , Egypt , ElSalvador , EquatorialGuinea , Eritrea , Eswatini , Ethiopia , Fiji , Finland , France , Gabon , Georgia , Germany , Ghana , Greece , Grenada , Guatemala , Guinea , Guinea-Bissau , Guyana , Haiti , Honduras , HongKong , Hungary , Iceland , Indonesia , Iran , Iraq , Ireland , Israel , Italy , Jamaica , Japan , Jordan , Kazakhstan , Kenya , Kiribati , Kosovo , Kuwait , Kyrgyzstan , Laos , Latvia , Lebanon , Lesotho , Liberia , Libya , Lithuania , Luxembourg , Macau , Madagascar , Malawi , Malaysia , Maldives , Mali , Malta , MarshallIslands , Mauritania , Mauritius , Mexico , Micronesia,FederatedStatesof , Moldova , Mongolia , Montenegro , Morocco , Mozambique , Myanmar , Namibia , Nauru , Netherlands , NewZealand , Nicaragua Mumbai,Delhi,Bangalore,Hyderabad,Ahmedabad,Chennai,Kolkata,SuraT,Pune,Jaipur,Lucknow,Kanpur,Nagpur,Indore,Thane,Bhopal,Visakhapatnam,Patna,Vadodara,Ghaziabad,Ludhiana, Agra,Nashik,Faridabad,Meerut,Rajkot,Kalyan,Vasai,Varanasi,Srinagar,Aurangabad,Dhanbad,Amritsar,Allahabad,Ranchi,Haora,Coimbatore,Jabalpur,Gwalior,Vijayawada,Jodhpur,Madurai,Raipur,Kota,Guwahati,Chandigarh,Solapur,Hubli,Bareilly,Moradabad,Gurgaon,Aligarh,Jalandhar,Tiruchirappalli,Bhubaneswar ,Thiruvananthapuram,Bhiwandi,Saharanpur,Gorakhpur, Guntur,Bikaner,Amravati,Noida,Jamshedpur,Bhilai,Warangal,Cuttack,Firozabad,Kochi,Bhavnagar,Dehradun,Durgapur,Asansol,Nanded,Kolapur,Ajmer,Gulbarga,Jamnagar,Ujjain,Loni,Siliguri,Jhansi,Ulhasnagar,Nellore,Jammu,Sangli,Belgaum,Mangalore, Ambattur,Tirunelveli,Malegoan,Gaya,Jalgaon,Udaipur

68179d65be22ee500d53ff54 Card 2

product image
COLD ROLLED SHEET

WE LADHANI METAL CORPORATION DEALS IN EN 10152 DC05 SHEET, PLATE AND COIL QUALITY- DC05 STANDARD- DIN EN 10152 MATERIAL NO.- 1.0312 OLD DESIGNATION- ST15-03 Special deep-drawing grade DC05 according to DIN EN 10152 The DIN EN 10152 standard specifies electrolytically galvanized, cold-rolled flat steel products for cold forming, including the special deep-drawing grade DC05. This standard defines the requirements for the zinc coating and the basic mechanical properties of the base material. DC05, when electrolytically galvanized in accordance with DIN EN 10152, is given an additional corrosion protection layer of zinc. This layer protects the material from oxidative influences and significantly increases the service life of the components made from it. The zinc coating can be applied in various thicknesses, depending on the specific requirements of the application. Typical coating thicknesses range from 5 to 20 µm. The chemical composition and mechanical properties of the base material DC05 remain unchanged after galvanizing and meet the requirements of DIN EN 10130. DC05 therefore retains its excellent cold formability and mechanical performance. The yield strength, tensile strength and elongation at break also remain in the same range as for ungalvanized DC05. In addition to mechanical performance, the quality of the zinc coating is of central importance. The DIN EN 10152 standard specifies the requirements for the uniformity of the coating, the adhesive strength of the zinc and the surface quality. These requirements ensure that the galvanized products offer high corrosion resistance and an aesthetically pleasing surface. The use of DC05 in accordance with DIN EN 10152 is widespread in the automotive industry, in the construction industry and in the manufacture of household appliances, where improved corrosion resistance is required in addition to high formability. Electrolytic galvanizing offers optimum protection here without impairing the excellent mechanical properties of the base material. AVAILABLE AT FOLLOWING LOCATION :- Mumbai,Delhi,Bangalore,Hyderabad,Ahmedabad,Chennai,Kolkata,SuraT,Pune,Jaipur,Lucknow,Kanpur,Nagpur,Indore,Thane,Bhopal,Visakhapatnam,Patna,Vadodara,Ghaziabad,Ludhiana, Agra,Nashik,Faridabad,Meerut,Rajkot,Kalyan,Vasai,Varanasi,Srinagar,Aurangabad,Dhanbad,Amritsar,Allahabad,Ranchi,Haora,Coimbatore,Jabalpur,Gwalior,Vijayawada,Jodhpur,Madurai,Raipur,Kota,Guwahati,Chandigarh,Solapur,Hubli,Bareilly,Moradabad,Gurgaon,Aligarh,Jalandhar,Tiruchirappalli,Bhubaneswar ,Thiruvananthapuram,Bhiwandi,Saharanpur,Gorakhpur, Guntur,Bikaner,Amravati,Noida,Jamshedpur,Bhilai,Warangal,Cuttack,Firozabad,Kochi,Bhavnagar,Dehradun,Durgapur,Asansol,Nanded,Kolapur,Ajmer,Gulbarga,Jamnagar,Ujjain,Loni,Siliguri,Jhansi,Ulhasnagar,Nellore,Jammu,Sangli,Belgaum,Mangalore, Ambattur,Tirunelveli,Malegoan,Gaya,Jalgaon,Udaipur WE EXPORT TO FOLLOWING COUTRIES Switzerland , Afghanistan , Albania , Algeria , Angola , AntiguaandBarbuda , Argentina , Armenia , Aruba , Australia , Austria , Azerbaijan , Bahrain , Bangladesh , Barbados , Belarus , Belgium , Belize , Benin , Bhutan , Bolivia , BosniaandHerzegovina , Botswana , Brazil , Brunei , Bulgaria , BurkinaFaso , Burundi , CaboVerde , Cambodia , Cameroon , Canada , CentralAfricanRepublic , Chad , Chile , China , Colombia , Comoros , Congo , CostaRica , Côted'Ivoire , Croatia , Cyprus , CzechRepublic , Denmark , Djibouti , Dominica , DominicanRepublic , Ecuador , Egypt , ElSalvador , EquatorialGuinea , Eritrea , Eswatini , Ethiopia , Fiji , Finland , France , Gabon , Georgia , Germany , Ghana , Greece , Grenada , Guatemala , Guinea , Guinea-Bissau , Guyana , Haiti , Honduras , HongKong , Hungary , Iceland , Indonesia , Iran , Iraq , Ireland , Israel , Italy , Jamaica , Japan , Jordan , Kazakhstan , Kenya , Kiribati , Kosovo , Kuwait , Kyrgyzstan , Laos , Latvia , Lebanon , Lesotho , Liberia , Libya , Lithuania , Luxembourg , Macau , Madagascar , Malawi , Malaysia , Maldives , Mali , Malta , MarshallIslands , Mauritania , Mauritius , Mexico , Micronesia,FederatedStatesof , Moldova , Mongolia , Montenegro , Morocco , Mozambique , Myanmar , Namibia , Nauru , Netherlands , NewZealand , Nicaragua , Niger , Nigeria , NorthMacedonia , Norway , Oman , Palau , Panama , PapuaNewGuinea , Paraguay , Peru , Philippines , Poland , Portugal , PuertoRico , Qatar , Romania , Russia , Rwanda , SaintKittsandNevis , SaintLucia , SaintVincentandtheGrenadines , Samoa , SanMarino , SãoToméandPríncipe , SaudiArabia , Senegal , Serbia , Seychelles , SierraLeone , Singapore , Slovakia , Slovenia , SolomonIslands , SouthAfrica , SouthKorea , SouthSudan , Spain , SriLanka , Sudan , Suriname , Sweden , Taiwan , Tajikistan , Tanzania , Thailand , TheBahamas , TheGambia , Timor-Leste , Togo , Tonga , TrinidadandTobago , Tunisia , Turkey , Turkmenistan , Tuvalu , Uganda , Ukraine , UnitedArabEmirates , UnitedKingdom , UnitedStates , Uruguay , Uzbekistan , Vanuatu , Venezuela , Vietnam , Yemen

68179d65be22ee500d53ff54 Card 2

product image
COLD ROLLED SHEET

WE LADHANI METAL CORPORATION ARE THE EXPORTER OF EN 10152 DC04 SHEET, PLATE AND COIL QUALITY- DC04 STANDARD- DIN EN 10152 MATERIAL NO.- 1.0338 OLD DESIGNATION- ST 14-03 Special deep-drawing grade DC04 according to DIN EN 10152 The DIN EN 10152 standard specifies electrolytically galvanized, cold-rolled flat steel products for cold forming, including the special deep-drawing grade DC04. This standard defines the requirements for the zinc coating and the basic mechanical properties of the base material. DC04, when electrolytically galvanized in accordance with DIN EN 10152, is given an additional corrosion protection layer of zinc. This layer protects the material from oxidative influences and significantly increases the service life of the components made from it. The zinc coating can be applied in various thicknesses, depending on the specific requirements of the application. Typical coating thicknesses range from 5 to 20 µm. The chemical composition and mechanical properties of the base material DC04 remain unchanged even after galvanizing and meet the requirements of DIN EN 10130. DC04 therefore retains its excellent cold formability and mechanical performance. In addition to mechanical performance, the quality of the zinc coating is of central importance. The DIN EN 10152 standard specifies the requirements for the uniformity of the coating, the adhesive strength of the zinc and the surface quality. These requirements ensure that the galvanized products offer high corrosion resistance and an aesthetically pleasing surface. The use of DC04 in accordance with DIN EN 10152 is widespread in the automotive industry, the construction industry and in the manufacture of household appliances, where improved corrosion resistance is required in addition to high formability. Electrolytic galvanizing offers optimum protection here without impairing the excellent mechanical properties of the base material. Comparison: Cold-rolled steel DC04 vs. DC01 DC04 and DC01 are both cold-rolled, unalloyed quality steels that are used for various industrial applications. While DC01 serves as the standard grade for general cold forming processes, DC04 is characterized by improved deep-drawing properties and higher ductility. This comparison highlights the differences between the two materials in terms of chemical composition, mechanical properties and typical applications. Chemical composition The chemical composition influences the formability and weldability of the steel. Both steels are made of carbon steel, but DC04 has a lower carbon content, which supports its improved cold formability. Thanks to the lower carbon and sulphur content, DC04 offers improved deep-drawing capability as less intergranular embrittlement occurs. AVAILABLE AT FOLLOWING LOCATION :- Mumbai,Delhi,Bangalore,Hyderabad,Ahmedabad,Chennai,Kolkata,SuraT,Pune,Jaipur,Lucknow,Kanpur,Nagpur,Indore,Thane,Bhopal,Visakhapatnam,Patna,Vadodara,Ghaziabad,Ludhiana, Agra,Nashik,Faridabad,Meerut,Rajkot,Kalyan,Vasai,Varanasi,Srinagar,Aurangabad,Dhanbad,Amritsar,Allahabad,Ranchi,Haora,Coimbatore,Jabalpur,Gwalior,Vijayawada,Jodhpur,Madurai,Raipur,Kota,Guwahati,Chandigarh,Solapur,Hubli,Bareilly,Moradabad,Gurgaon,Aligarh,Jalandhar,Tiruchirappalli,Bhubaneswar ,Thiruvananthapuram,Bhiwandi,Saharanpur,Gorakhpur, Guntur,Bikaner,Amravati,Noida,Jamshedpur,Bhilai,Warangal,Cuttack,Firozabad,Kochi,Bhavnagar,Dehradun,Durgapur,Asansol,Nanded,Kolapur,Ajmer,Gulbarga,Jamnagar,Ujjain,Loni,Siliguri,Jhansi,Ulhasnagar,Nellore,Jammu,Sangli,Belgaum,Mangalore, Ambattur,Tirunelveli,Malegoan,Gaya,Jalgaon,Udaipur WE EXPORT TO FOLLOWING COUTRIES Switzerland , Afghanistan , Albania , Algeria , Angola , AntiguaandBarbuda , Argentina , Armenia , Aruba , Australia , Austria , Azerbaijan , Bahrain , Bangladesh , Barbados , Belarus , Belgium , Belize , Benin , Bhutan , Bolivia , BosniaandHerzegovina , Botswana , Brazil , Brunei , Bulgaria , BurkinaFaso , Burundi , CaboVerde , Cambodia , Cameroon , Canada , CentralAfricanRepublic , Chad , Chile , China , Colombia , Comoros , Congo , CostaRica , Côted'Ivoire , Croatia , Cyprus , CzechRepublic , Denmark , Djibouti , Dominica , DominicanRepublic , Ecuador , Egypt , ElSalvador , EquatorialGuinea , Eritrea , Eswatini , Ethiopia , Fiji , Finland , France , Gabon , Georgia , Germany , Ghana , Greece , Grenada , Guatemala , Guinea , Guinea-Bissau , Guyana , Haiti , Honduras , HongKong , Hungary , Iceland , Indonesia , Iran , Iraq , Ireland , Israel , Italy , Jamaica , Japan , Jordan , Kazakhstan , Kenya , Kiribati , Kosovo , Kuwait , Kyrgyzstan , Laos , Latvia , Lebanon , Lesotho , Liberia , Libya , Lithuania , Luxembourg , Macau , Madagascar , Malawi , Malaysia , Maldives , Mali , Malta , MarshallIslands , Mauritania , Mauritius , Mexico , Micronesia,FederatedStatesof , Moldova , Mongolia , Montenegro , Morocco , Mozambique , Myanmar , Namibia , Nauru , Netherlands , NewZealand , Nicaragua , Niger , Nigeria , NorthMacedonia , Norway , Oman , Palau , Panama

68179d65be22ee500d53ff54 Card 2

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COLD ROLLED SHEET

WE LADHANI METAL CORPORATION ARE THE SUPPLIER OF EN 10152 DC03 SHEET, PLATE AND COIL QUALITY-DC03 STANDARD-DIN EN 10152 MATERIAL NO.-1.0347 OLD DESIGNATION-ST 13-03 Deep-drawing quality DC03 according to DIN EN 10152 The DIN EN 10152 standard specifies electrolytically galvanized, cold-rolled flat steel products for cold forming, including the deep-drawing grade DC03. This standard defines the requirements for the zinc coating and the basic mechanical properties of the base material. DC03, when electrolytically galvanized in accordance with DIN EN 10152, is given an additional corrosion protection layer of zinc. This layer protects the material from oxidative influences and significantly increases the service life of the components made from it. The zinc coating can be applied in various thicknesses, depending on the specific requirements of the application. Typical coating thicknesses range from 5 to 20 µm. The chemical composition and mechanical properties of the base material DC03 remain unchanged after galvanizing and meet the requirements of DIN EN 10130. DC03 therefore retains its excellent cold formability and mechanical performance. The yield strength, tensile strength and elongation at break also remain in the same range as for ungalvanized DC03. In addition to mechanical performance, the quality of the zinc coating is of central importance. The DIN EN 10152 standard specifies the requirements for the uniformity of the coating, the adhesive strength of the zinc and the surface quality. These requirements ensure that the galvanized products offer high corrosion resistance and an aesthetically pleasing surface. The use of DC03 in accordance with DIN EN 10152 is widespread in the automotive industry, in the construction industry and in the manufacture of household appliances, where improved corrosion resistance is required in addition to high formability. Electrolytic galvanizing offers optimum protection here without impairing the excellent mechanical properties of the base material. AVAILABLE IN FOLLOWING CITIES: Mumbai,Delhi,Bangalore,Hyderabad,Ahmedabad,Chennai,Kolkata,SuraT,Pune,Jaipur,Lucknow,Kanpur,Nagpur,Indore,Thane,Bhopal,Visakhapatnam,Patna,Vadodara,Ghaziabad,Ludhiana, Agra,Nashik,Faridabad,Meerut,Rajkot,Kalyan,Vasai,Varanasi,Srinagar,Aurangabad,Dhanbad,Amritsar,Allahabad,Ranchi,Haora,Coimbatore,Jabalpur,Gwalior,Vijayawada,Jodhpur,Madurai,Raipur,Kota,Guwahati,Chandigarh,Solapur,Hubli,Bareilly,Moradabad,Gurgaon,Aligarh,Jalandhar,Tiruchirappalli,Bhubaneswar ,Thiruvananthapuram,Bhiwandi,Saharanpur,Gorakhpur, Guntur,Bikaner,Amravati,Noida,Jamshedpur,Bhilai,Warangal,Cuttack,Firozabad,Kochi,Bhavnagar,Dehradun,Durgapur,Asansol,Nanded,Kolapur,Ajmer,Gulbarga,Jamnagar,Ujjain,Loni,Siliguri,Jhansi,Ulhasnagar,Nellore,Jammu,Sangli,Belgaum,Mangalore, Ambattur,Tirunelveli,Malegoan,Gaya,Jalgaon,Udaipur WE EXPORT TO FOLLOWING COUTRIES Switzerland , Afghanistan , Albania , Algeria , Angola , AntiguaandBarbuda , Argentina , Armenia , Aruba , Australia , Austria , Azerbaijan , Bahrain , Bangladesh , Barbados , Belarus , Belgium , Belize , Benin , Bhutan , Bolivia , BosniaandHerzegovina , Botswana , Brazil , Brunei , Bulgaria , BurkinaFaso , Burundi , CaboVerde , Cambodia , Cameroon , Canada , CentralAfricanRepublic , Chad , Chile , China , Colombia , Comoros , Congo , CostaRica , Côted'Ivoire , Croatia , Cyprus , CzechRepublic , Denmark , Djibouti , Dominica , DominicanRepublic , Ecuador , Egypt , ElSalvador , EquatorialGuinea , Eritrea , Eswatini , Ethiopia , Fiji , Finland , France , Gabon , Georgia , Germany , Ghana , Greece , Grenada , Guatemala , Guinea , Guinea-Bissau , Guyana , Haiti , Honduras , HongKong , Hungary , Iceland , Indonesia , Iran , Iraq , Ireland , Israel , Italy , Jamaica , Japan , Jordan , Kazakhstan , Kenya , Kiribati , Kosovo , Kuwait , Kyrgyzstan , Laos , Latvia , Lebanon , Lesotho , Liberia , Libya , Lithuania , Luxembourg , Macau , Madagascar , Malawi , Malaysia , Maldives , Mali , Malta , MarshallIslands , Mauritania , Mauritius , Mexico , Micronesia,FederatedStatesof , Moldova , Mongolia , Montenegro , Morocco , Mozambique , Myanmar , Namibia , Nauru , Netherlands , NewZealand , Nicaragua , Niger , Nigeria , NorthMacedonia , Norway , Oman , Palau , Panama , PapuaNewGuinea , Paraguay , Peru , Philippines , Poland , Portugal , PuertoRico , Qatar , Romania , Russia , Rwanda , SaintKittsandNevis , SaintLucia , SaintVincentandtheGrenadines , Samoa , SanMarino , SãoToméandPríncipe , SaudiArabia , Senegal , Serbia , Seychelles , SierraLeone , Singapore , Slovakia , Slovenia , SolomonIslands , SouthAfrica , SouthKorea , SouthSudan , Spain , SriLanka , Sudan , Suriname , Sweden , Taiwan , Tajikistan , Tanzania , Thailand , TheBahamas , TheGambia , Timor-Leste , Togo , Tonga , TrinidadandTobago , Tunisia , Turkey , Turkmenistan , Tuvalu , Uganda , Ukraine , UnitedArabEmirates , UnitedKingdom , UnitedStates , Uruguay , Uzbekistan , Vanuatu , Venezuela , Vietnam , Yemen , Zambia

68179d65be22ee500d53ff54 Card 2

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COLD ROLLED SHEET

WE LADHANI METAL CORPORATION ARE THE SUPPLIER OF EN 10152 DC01 SHEET, PLATE AND COIL QUALITY STANDARD MATERIAL NO. OLD DESIGNATION DC01 DIN EN 10152 1.033 ST 12-03 Cold-rolled flat steel DC01, according to the standard DIN EN 10152 Cold-rolled flat steel DC01 is a widely used material in the industrial sector, which is used for various applications in the cold forming process due to its excellent properties. The standard DIN EN 10152 are decisive for ensuring the quality and requirements of this material. DC01+ZE according to the DIN EN 10152 standard The DIN EN 10152 standard extends the requirements of DIN EN 10130 to include specific conditions for electrolytically galvanized products. This standard is crucial for applications in which corrosion protection plays an important role. Technical delivery conditions DIN EN 10152 specifies the technical delivery conditions for electrolytically galvanized, cold-rolled flat products. In addition to the chemical composition and mechanical properties, these conditions also include the specific requirements for the zinc coating. Chemical composition and zinc coating The chemical composition of the base material DC01 generally remains unchanged, but an additional electrolytic zinc coating is applied. This coating is used for corrosion protection and varies in thickness depending on the specific requirements of the application. The standard provides detailed specifications for the thickness and uniformity of the zinc coating to ensure optimum protection. Mechanical properties Even with galvanized products, the mechanical properties of the base material are largely retained. The standard ensures that the cold formability and strength of the steel are not impaired despite the additional coating. Corrosion resistance and surface quality One of the main advantages of products manufactured in accordance with DIN EN 10152 is their improved corrosion resistance. Electrolytic galvanizing protects the steel from rust and thus increases the service life of the end product. The surface quality also plays a decisive role here and can be supplied in various finishes, such as smooth or textured. WE CAN ALSO SUPPLY IN DIFFERENT PARTS OF INDIA LIKE: Mumbai,Delhi,Bangalore,Hyderabad,Ahmedabad,Chennai,Kolkata,SuraT,Pune,Jaipur,Lucknow,Kanpur,Nagpur,Indore,Thane,Bhopal,Visakhapatnam,Patna,Vadodara,Ghaziabad,Ludhiana,Agra, Nashik,Faridabad,Meerut,Rajkot,Kalyan,Vasai,Varanasi,Srinagar,Aurangabad,Dhanbad, Amritsar,Allahabad,Ranchi,Haora,Coimbatore,Jabalpur,Gwalior,Vijayawada,Jodhpur,Madurai, Raipur,Kota,Guwahati,Chandigarh,Solapur,Hubli,Bareilly,Moradabad,Gurgaon,Aligarh,Jalandhar,Tiruchirappalli,Bhubaneswar,Salem,Thiruvananthapuram,Bhiwandi,Saharanpur,Gorakhpur, Guntur,Bikaner,Amravati,Noida,Jamshedpur,Bhilai,Warangal,Cuttack,Firozabad,Kochi,Bhavnagar,Dehradun,Durgapur,Asansol,Nanded,Kolapur,Ajmer,Gulbarga,Jamnagar,Ujjain,Loni,Siliguri,Jhansi,Ulhasnagar,Nellore,Jammu,Sangli ,Belgaum,Mangalore,Ambattur,Tirunelveli,Malegoan,Gaya,Jalgaon,Udaipur WE CAN ALSO EXPORT IN DIFFERENT COUNTRY LIKE: Switzerland , Afghanistan , Albania , Algeria , Angola , AntiguaandBarbuda , Argentina , Armenia , Aruba , Australia , Austria , Azerbaijan , Bahrain , Bangladesh , Barbados , Belarus , Belgium , Belize , Benin , Bhutan , Bolivia , BosniaandHerzegovina , Botswana , Brazil , Brunei , Bulgaria , BurkinaFaso , Burundi , CaboVerde , Cambodia , Cameroon , Canada , CentralAfricanRepublic , Chad , Chile , China , Colombia , Comoros , Congo , CostaRica , Côted'Ivoire , Croatia , Cyprus , CzechRepublic , Denmark , Djibouti , Dominica , DominicanRepublic , Ecuador , Egypt , ElSalvador , EquatorialGuinea , Eritrea , Eswatini , Ethiopia , Fiji , Finland , France , Gabon , Georgia , Germany , Ghana , Greece , Grenada , Guatemala , Guinea , Guinea-Bissau , Guyana , Haiti , Honduras , HongKong , Hungary , Iceland , Indonesia , Iran , Iraq , Ireland , Israel , Italy , Jamaica , Japan , Jordan , Kazakhstan , Kenya , Kiribati , Kosovo , Kuwait , Kyrgyzstan , Laos , Latvia , Lebanon , Lesotho , Liberia , Libya , Lithuania , Luxembourg , Macau , Madagascar , Malawi , Malaysia , Maldives , Mali , Malta , MarshallIslands , Mauritania , Mauritius , Mexico , Micronesia,FederatedStatesof , Moldova , Mongolia , Montenegro , Morocco , Mozambique , Myanmar , Namibia , Nauru , Netherlands , NewZealand , Nicaragua , Niger , Nigeria , NorthMacedonia , Norway , Oman , Palau , Panama , PapuaNewGuinea , Paraguay , Peru , Philippines , Poland , Portugal , PuertoRico , Qatar , Romania , Russia , Rwanda , SaintKittsandNevis , SaintLucia , SaintVincentandtheGrenadines , Samoa , SanMarino , SãoToméandPríncipe , SaudiArabia , Senegal , Serbia , Seychelles , SierraLeone , Singapore , Slovakia , Slovenia , SolomonIslands , SouthAfrica , SouthKorea , SouthSudan , Spain , SriLanka , Sudan , Suriname , Sweden , Taiwan , Tajikistan , Tanzania , Thailand , TheBahamas , TheGambia , Timor-Leste , Togo , Tonga , TrinidadandTobago , Tunisia

68179d65be22ee500d53ff54 Card 2

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COLD ROLLED SHEET

QUALITY STANDARD MATERIAL NO. OLD DESIGNATION DC05 DIN EN 10130 1.0312 St 15-03 The special deep-drawing grade DC05 is specified in accordance with the DIN EN 10130 standard, which focuses on cold-rolled flat products made of soft steels for cold forming. This standard specifies the technical requirements and test methods for cold-rolled products used in numerous industrial applications, particularly where exceptional formability and excellent surface quality are required. DC05 is a low-carbon steel that is characterized by its excellent cold formability. The chemical composition of DC05 is strictly controlled to ensure that the material has the desired mechanical properties. The carbon content in DC05 is typically a maximum of 0.02 %, while the manganese content is a maximum of 0.25 %. This composition promotes the high formability and weldability of the steel. The mechanical properties of DC05 are characterized by a low yield strength of maximum 150 MPa and a tensile strength between 270 and 350 MPa. An outstanding feature of DC05 is its high elongation at break of at least 38 %, which illustrates its excellent formability. These properties make DC05 ideal for the production of complex components that require high precision and surface quality, such as body parts in the automotive industry or sophisticated components in the electrical industry. The DIN EN 10130 standard also specifies the tolerances for dimensions, shape and surface finish. These tolerances are crucial to ensure consistently high product quality and to meet the requirements of end users. The surface of the cold-rolled flat products can be supplied in various qualities, from matt to glossy, to meet the specific requirements of different applications. The DIN EN 10152 standard specifies electrolytically galvanized, cold-rolled flat steel products for cold forming, including the special deep-drawing grade DC05. This standard defines the requirements for the zinc coating and the basic mechanical properties of the base material. DC05, when electrolytically galvanized in accordance with DIN EN 10152, is given an additional corrosion protection layer of zinc. This layer protects the material from oxidative influences and significantly increases the service life of the components made from it. The zinc coating can be applied in various thicknesses, depending on the specific requirements of the application. Typical coating thicknesses range from 5 to 20 µm. The chemical composition and mechanical properties of the base material DC05 remain unchanged after galvanizing and meet the requirements of DIN EN 10130. DC05 therefore retains its excellent cold formability and mechanical performance. The yield strength, tensile strength and elongation at break also remain in the same range as for ungalvanized DC05. In addition to mechanical performance, the quality of the zinc coating is of central importance. The DIN EN 10152 standard specifies the requirements for the uniformity of the coating, the adhesive strength of the zinc and the surface quality. These requirements ensure that the galvanized products offer high corrosion resistance and an aesthetically pleasing surface. The use of DC05 in accordance with DIN EN 10152 is widespread in the automotive industry, in the construction industry and in the manufacture of household appliances, where improved corrosion resistance is required in addition to high formability. Electrolytic galvanizing offers optimum protection here without impairing the excellent mechanical properties of the base material. In summary, it can be said that the special deep-drawing grade DC05 offers a wide range of applications in accordance with both DIN EN 10130 and DIN EN 10152. While DIN EN 10130 focuses on high formability and surface quality, DIN EN 10152 supplements these properties with improved corrosion resistance thanks to the zinc coating. Both standards ensure that DC05 is a reliable and high-quality material for numerous industrial applications.

68179d65be22ee500d53ff54 Card 2

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IS 6911 SS Sheet, Plate & Coil

Ladhani Metal Corporation, a manufacturer, supplier, and exporter, offers stainless steel sheets, plates, and coils in grade X12Cr12 as per IS 6911 specifications. X12Cr12 is a martensitic stainless steel grade engineered for applications requiring high hardness, strength, and moderate corrosion resistance. Manufactured with precision and strict adherence to standards, our products ensure durability and reliable performance across industrial applications. Chemical Composition of X12Cr12 (as per IS 6911) • Carbon (C): 0.10% – 0.15% • Manganese (Mn): 1.0% max • Silicon (Si): 1.0% max • Phosphorus (P): 0.030% max • Sulphur (S): 0.040% max • Chromium (Cr): 11.0% – 13.0% • Aluminium (Al): 0.10 – 0.30% Functions and Characteristics • Provides high strength and hardness after heat treatment • Offers moderate corrosion resistance in mildly corrosive environments • Ensures wear resistance for components exposed to friction and load • Supplied in annealed, hardened, or tempered condition depending on requirements • Magnetic in nature with good structural toughness Applications • Power Generation – Used in boiler components, turbine parts, and piping systems • Oil and Gas – Suitable for transmission pipelines and structural components • Petrochemical Industry – Applied in processing units, refineries, and storage tanks • Fertilizer Plants – Used in equipment handling corrosive chemicals • Chemical Industry – Suitable for reactors, heat exchangers, and process vessels • Marine Engineering – Applied in shipbuilding, offshore rigs, and seawater systems • Automotive Industry – Used in exhaust components, clamps, and structural parts • Food Processing – Applied in equipment requiring hygiene and wear resistance • Construction – Used in architectural structures and load-bearing elements • General Engineering – Suitable for machine parts, fasteners, and wear-resistant applications Available Forms • Stainless steel sheets • Stainless steel plates • Stainless steel coils Grades Available under IS 6911 Apart from X12Cr12, IS 6911 also covers a wide range of stainless steel grades, including X04Cr12, X07Cr17, X20Cr13, X30Cr13, X40Cr13, X15Cr16Ni2, X108Cr17Mo, X10Cr17Mn6Ni4N2O, X07Cr11Mn12Ni4, X10Cr18Mn9Ni5, X30Cr17Ni7, X07Cr18Ni9, X04Cr19Ni9, X02Cr19Ni10, X15Cr24Ni13, X20Cr25Ni20, X04Cr17Ni12Mo2, X02Cr17Ni12Mo2, X04Cr17Ni12Mo2Ti, X04Cr18Ni10Ti, and X04Cr18Ni10Nb and other specified grades. Conclusion IS 6911 SS X12Cr12 sheets, plates, and coils offered by Ladhani Metal Corporation, a manufacturer, supplier, and exporter, combine high strength, hardness, and moderate corrosion resistance for versatile industrial applications. With availability in multiple grades as per IS 6911, we deliver solutions that meet both domestic and international standards. For inquiries or project requirements, contact Ladhani Metal Corporation. #Mumbai #Delhi #Chennai #Kolkata #Hyderabad #Bangalore #Pune #Ahmedabad #Surat #Rajkot #Vadodara #Coimbatore #Jaipur #Nagpur #Indore #Ludhiana #Kanpur #Bhubaneswar #Rourkela #Visakhapatnam #Trichy #Kochi #Mangalore #Jamnagar #Bharuch #Vapi #Hazira #Ankleshwar #Durgapur #Jamshedpur #Raipur #Bilaspur #Faridabad #Noida #Gurgaon #Chandigarh #Lucknow #Bhopal #Patna #Guwahati #Agra #Varanasi #Meerut #Ghaziabad #Moradabad #Aligarh #Aurangabad #Kolhapur #Nashik #Solapur #Thane #Amravati #Satara #Sangli #Hubli #Belgaum #Davangere #Mysore #Erode #Salem #Madurai #Tirunelveli #Tuticorin #Hosur #Nellore #Warangal #Karimnagar #Nanded #Udaipur #Ajmer #Jodhpur #Kota #Alwar #Gwalior #Rewa #Jhansi #IS6911sheetmanufacturer #IS6911sheet supplier # IS6911sheetexporter #IS6911 #IS6911StainlessSteel #IS6911Sheet #IS6911Plate #IS6911Coil #IS6911Strip #IS6911Manufacturer #IS6911Supplier #IS6911Exporter #StainlessSteelIndia #StainlessSteelSheet #StainlessSteelPlate #StainlessSteelCoil #StainlessSteelStrip #SS304 #SS304L #SS316 #SS316L #X04Cr12 #X07Cr17 #X12Cr12 #X20Cr13 #X30Cr13 #X40Cr13 #X15Cr16Ni2 #X108Cr17Mo #X07Cr18Ni9 #X04Cr19Ni9 #X02Cr19Ni10 #X15Cr24Ni13 #X20Cr25Ni20 #X04Cr17Ni12Mo2 #X02Cr17Ni12Mo2 #X04Cr17Ni12Mo2Ti #X04Cr18Ni10Ti #X04Cr18Ni10Nb #StainlessSteelGrades #StainlessSteelManufacturer #StainlessSteelSupplier #StainlessSteelExporter #StainlessSteelStockist #IndustrialStainlessSteel #BoilerStainlessSteel #PetrochemicalStainlessSteel #ChemicalIndustryStainlessSteel #MarineStainlessSteel #HeatResistantSteel #CorrosionResistantSteel #SSSheetsPlatesCoils #LadhaniMetalCorporation

68179d65be22ee500d53ff54 Card 2

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COLD ROLLED SHEET

Quality Standard Material No. Old designation DC01 DIN EN 10130 1.0330 ST 12-03 Cold-rolled flat steel DC01, according to the standards DIN EN 10130 and DIN EN 10152 Cold-rolled flat steel DC01 is a widely used material in the industrial sector, which is used for various applications in the cold forming process due to its excellent properties. The standards DIN EN 10130 and DIN EN 10152 are decisive for ensuring the quality and requirements of this material. DC01 according to the DIN EN 10130 standard The DIN EN 10130 standard defines the requirements for cold-rolled flat products made of unalloyed quality steels that are used in the cold forming process. Technical delivery conditions DIN EN 10130 specifies the technical delivery conditions for cold-rolled flat steel. These include the chemical composition, mechanical properties and surface quality. The standard ensures that the products supplied meet the required standards in order to guarantee workability and final quality. Chemical composition The chemical composition of the steel is decisive for its properties and is described in detail in DIN EN 10130. For DC01, the maximum carbon content is 0.12%, while the manganese and phosphorus content is also subject to specific limits. This composition ensures good cold formability and a high surface quality. Mechanical properties DC01 in accordance with DIN EN 10130 has specific mechanical properties that make it ideal for cold forming. These include a minimum tensile strength of 270-410 MPa and a minimum elongation of 28%. These properties allow the steel to be processed into complex shapes without cracking or breaking. Surface quality The surface quality is another aspect of DIN EN 10130. DC01 can be supplied in different surface finishes, such as smooth or matt. These variations allow adaptation to specific requirements of the end application, be it for decorative purposes or further coating processes. DC01+ZE according to the DIN EN 10152 standard The DIN EN 10152 standard extends the requirements of DIN EN 10130 to include specific conditions for electrolytically galvanized products. This standard is crucial for applications in which corrosion protection plays an important role. Technical delivery conditions DIN EN 10152 specifies the technical delivery conditions for electrolytically galvanized, cold-rolled flat products. In addition to the chemical composition and mechanical properties, these conditions also include the specific requirements for the zinc coating. Chemical composition and zinc coating The chemical composition of the base material DC01 generally remains unchanged, but an additional electrolytic zinc coating is applied. This coating is used for corrosion protection and varies in thickness depending on the specific requirements of the application. The standard provides detailed specifications for the thickness and uniformity of the zinc coating to ensure optimum protection. Mechanical properties Even with galvanized products, the mechanical properties of the base material are largely retained. The standard ensures that the cold formability and strength of the steel are not impaired despite the additional coating. Corrosion resistance and surface quality One of the main advantages of products manufactured in accordance with DIN EN 10152 is their improved corrosion resistance. Electrolytic galvanizing protects the steel from rust and thus increases the service life of the end product. The surface quality also plays a decisive role here and can be supplied in various finishes, such as smooth or textured. Conclusion Cold-rolled flat steel DC01, produced in accordance with the DIN EN 10130 and DIN EN 10152 standards, offers a number of advantages for applications in the cold forming process. While DIN EN 10130 defines the basic requirements for chemical composition, mechanical properties and surface quality, DIN EN 10152 extends these specifications to include specific conditions for electrolytically galvanized products that offer additional corrosion protection. Both standards together ensure that DC01 is a versatile material with high quality and durability. FOR EN 10130 DC01 CHEMICAL , MECHANICAL DATA SHEET KINDLY VISIT https://www.ladhanimetal.in/page/en-10130-2006-chemical-and-mechanical-composition/689c322d2e585e299cb43798 https://www.ladhanimetal.in/page/en-10130-cold-rolled-flat-sheet-plate-coil-data-sheet-equivalent-grade-and-chemical-and-mechanical-properties/68a45503fc14472bb274df32

68179d65be22ee500d53ff54 Card 2

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COLD ROLLED SHEET

Quality Standard Material No. Old designation DC01 DIN EN 10130 1.0330 ST 12-03 Cold-rolled flat steel DC01, according to the standards DIN EN 10130 and DIN EN 10152 Cold-rolled flat steel DC01 is a widely used material in the industrial sector, which is used for various applications in the cold forming process due to its excellent properties. The standards DIN EN 10130 and DIN EN 10152 are decisive for ensuring the quality and requirements of this material. DC01 according to the DIN EN 10130 standard The DIN EN 10130 standard defines the requirements for cold-rolled flat products made of unalloyed quality steels that are used in the cold forming process. Technical delivery conditions DIN EN 10130 specifies the technical delivery conditions for cold-rolled flat steel. These include the chemical composition, mechanical properties and surface quality. The standard ensures that the products supplied meet the required standards in order to guarantee workability and final quality. Chemical composition The chemical composition of the steel is decisive for its properties and is described in detail in DIN EN 10130. For DC01, the maximum carbon content is 0.12%, while the manganese and phosphorus content is also subject to specific limits. This composition ensures good cold formability and a high surface quality. Mechanical properties DC01 in accordance with DIN EN 10130 has specific mechanical properties that make it ideal for cold forming. These include a minimum tensile strength of 270-410 MPa and a minimum elongation of 28%. These properties allow the steel to be processed into complex shapes without cracking or breaking. Surface quality The surface quality is another aspect of DIN EN 10130. DC01 can be supplied in different surface finishes, such as smooth or matt. These variations allow adaptation to specific requirements of the end application, be it for decorative purposes or further coating processes. DC01+ZE according to the DIN EN 10152 standard The DIN EN 10152 standard extends the requirements of DIN EN 10130 to include specific conditions for electrolytically galvanized products. This standard is crucial for applications in which corrosion protection plays an important role. Technical delivery conditions DIN EN 10152 specifies the technical delivery conditions for electrolytically galvanized, cold-rolled flat products. In addition to the chemical composition and mechanical properties, these conditions also include the specific requirements for the zinc coating. Chemical composition and zinc coating The chemical composition of the base material DC01 generally remains unchanged, but an additional electrolytic zinc coating is applied. This coating is used for corrosion protection and varies in thickness depending on the specific requirements of the application. The standard provides detailed specifications for the thickness and uniformity of the zinc coating to ensure optimum protection. Mechanical properties Even with galvanized products, the mechanical properties of the base material are largely retained. The standard ensures that the cold formability and strength of the steel are not impaired despite the additional coating. Corrosion resistance and surface quality One of the main advantages of products manufactured in accordance with DIN EN 10152 is their improved corrosion resistance. Electrolytic galvanizing protects the steel from rust and thus increases the service life of the end product. The surface quality also plays a decisive role here and can be supplied in various finishes, such as smooth or textured. Conclusion Cold-rolled flat steel DC01, produced in accordance with the DIN EN 10130 and DIN EN 10152 standards, offers a number of advantages for applications in the cold forming process. While DIN EN 10130 defines the basic requirements for chemical composition, mechanical properties and surface quality, DIN EN 10152 extends these specifications to include specific conditions for electrolytically galvanized products that offer additional corrosion protection. Both standards together ensure that DC01 is a versatile material with high quality and durability. FOR EN 10130 DC01 CHEMICAL , MECHANICAL DATA SHEET KINDLY VISIT https://www.ladhanimetal.in/page/en-10130-2006-chemical-and-mechanical-composition/689c322d2e585e299cb43798 https://www.ladhanimetal.in/page/en-10130-cold-rolled-flat-sheet-plate-coil-data-sheet-equivalent-grade-and-chemical-and-mechanical-properties/68a45503fc14472bb274df32

68179d65be22ee500d53ff54 Card 2

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COLD ROLLED SHEET

Quality Standard Material No. Old designation DC01 DIN EN 10130 1.0330 ST 12-03 Cold-rolled flat steel DC01, according to the standards DIN EN 10130 and DIN EN 10152 Cold-rolled flat steel DC01 is a widely used material in the industrial sector, which is used for various applications in the cold forming process due to its excellent properties. The standards DIN EN 10130 and DIN EN 10152 are decisive for ensuring the quality and requirements of this material. DC01 according to the DIN EN 10130 standard The DIN EN 10130 standard defines the requirements for cold-rolled flat products made of unalloyed quality steels that are used in the cold forming process. Technical delivery conditions DIN EN 10130 specifies the technical delivery conditions for cold-rolled flat steel. These include the chemical composition, mechanical properties and surface quality. The standard ensures that the products supplied meet the required standards in order to guarantee workability and final quality. Chemical composition The chemical composition of the steel is decisive for its properties and is described in detail in DIN EN 10130. For DC01, the maximum carbon content is 0.12%, while the manganese and phosphorus content is also subject to specific limits. This composition ensures good cold formability and a high surface quality. Mechanical properties DC01 in accordance with DIN EN 10130 has specific mechanical properties that make it ideal for cold forming. These include a minimum tensile strength of 270-410 MPa and a minimum elongation of 28%. These properties allow the steel to be processed into complex shapes without cracking or breaking. Surface quality The surface quality is another aspect of DIN EN 10130. DC01 can be supplied in different surface finishes, such as smooth or matt. These variations allow adaptation to specific requirements of the end application, be it for decorative purposes or further coating processes. DC01+ZE according to the DIN EN 10152 standard The DIN EN 10152 standard extends the requirements of DIN EN 10130 to include specific conditions for electrolytically galvanized products. This standard is crucial for applications in which corrosion protection plays an important role. Technical delivery conditions DIN EN 10152 specifies the technical delivery conditions for electrolytically galvanized, cold-rolled flat products. In addition to the chemical composition and mechanical properties, these conditions also include the specific requirements for the zinc coating. Chemical composition and zinc coating The chemical composition of the base material DC01 generally remains unchanged, but an additional electrolytic zinc coating is applied. This coating is used for corrosion protection and varies in thickness depending on the specific requirements of the application. The standard provides detailed specifications for the thickness and uniformity of the zinc coating to ensure optimum protection. Mechanical properties Even with galvanized products, the mechanical properties of the base material are largely retained. The standard ensures that the cold formability and strength of the steel are not impaired despite the additional coating. Corrosion resistance and surface quality One of the main advantages of products manufactured in accordance with DIN EN 10152 is their improved corrosion resistance. Electrolytic galvanizing protects the steel from rust and thus increases the service life of the end product. The surface quality also plays a decisive role here and can be supplied in various finishes, such as smooth or textured. Conclusion Cold-rolled flat steel DC01, produced in accordance with the DIN EN 10130 and DIN EN 10152 standards, offers a number of advantages for applications in the cold forming process. While DIN EN 10130 defines the basic requirements for chemical composition, mechanical properties and surface quality, DIN EN 10152 extends these specifications to include specific conditions for electrolytically galvanized products that offer additional corrosion protection. Both standards together ensure that DC01 is a versatile material with high quality and durability. FOR EN 10130 DC01 CHEMICAL , MECHANICAL DATA SHEET KINDLY VISIT https://www.ladhanimetal.in/page/en-10130-2006-chemical-and-mechanical-composition/689c322d2e585e299cb43798 https://www.ladhanimetal.in/page/en-10130-cold-rolled-flat-sheet-plate-coil-data-sheet-equivalent-grade-and-chemical-and-mechanical-properties/68a45503fc14472bb274df32

68179d65be22ee500d53ff54 Card 2

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COLD ROLLED SHEET

QUALITY STANDARD MATERIAL NO. OLD DESIGNATION DC03 DIN EN 10130 1.0347 St 13-03 The deep drawing grade DC03 is specified according to the standard DIN EN 10130, which focuses on cold-rolled flat products made of soft steels for cold forming. This standard defines the technical requirements and test methods for cold-rolled products used in various industrial applications, particularly where high demands are placed on surface quality and mechanical properties. DC03 is a low-carbon steel characterized by excellent cold formability. The chemical composition of DC03 is precisely defined to ensure that the material has the required mechanical properties. Typically, DC03 contains a maximum of 0.10% carbon, a maximum of 0.45% manganese and traces of phosphorus and sulphur. This small amount of alloying elements contributes to the good formability and weldability of the steel. The mechanical properties of DC03 are also clearly defined. The material has a yield strength of at least 140 MPa and a tensile strength of between 270 and 370 MPa. In addition, DC03 has an elongation at break of at least 34%, which underlines its excellent formability. These properties make DC03 particularly suitable for the production of complex components that require high precision and surface quality, such as body parts in the automotive industry or household appliances. The DIN EN 10130 standard also specifies the tolerances for dimensions, shape and surface finish. These tolerances are crucial to ensure consistently high product quality and to meet the requirements of end users. The surface of the cold-rolled flat products can be supplied in various qualities, from matt to glossy, to meet the specific requirements of different applications. The DIN EN 10152 standard specifies electrolytically galvanized, cold-rolled flat steel products for cold forming, including the deep-drawing grade DC03. This standard defines the requirements for the zinc coating and the basic mechanical properties of the base material. DC03, when electrolytically galvanized in accordance with DIN EN 10152, is given an additional corrosion protection layer of zinc. This layer protects the material from oxidative influences and significantly increases the service life of the components made from it. The zinc coating can be applied in various thicknesses, depending on the specific requirements of the application. Typical coating thicknesses range from 5 to 20 µm. The chemical composition and mechanical properties of the base material DC03 remain unchanged after galvanizing and meet the requirements of DIN EN 10130. DC03 therefore retains its excellent cold formability and mechanical performance. The yield strength, tensile strength and elongation at break also remain in the same range as for ungalvanized DC03. In addition to mechanical performance, the quality of the zinc coating is of central importance. The DIN EN 10152 standard specifies the requirements for the uniformity of the coating, the adhesive strength of the zinc and the surface quality. These requirements ensure that the galvanized products offer high corrosion resistance and an aesthetically pleasing surface. The use of DC03 in accordance with DIN EN 10152 is widespread in the automotive industry, in the construction industry and in the manufacture of household appliances, where improved corrosion resistance is required in addition to high formability. Electrolytic galvanizing offers optimum protection here without impairing the excellent mechanical properties of the base material. In summary, it can be said that the deep-drawing grade DC03 offers a wide range of applications in accordance with both DIN EN 10130 and DIN EN 10152. While DIN EN 10130 focuses on high formability and surface quality, DIN EN 10152 supplements these properties with improved corrosion resistance thanks to the zinc coating. Both standards ensure that DC03 is a reliable and high-quality material for numerous industrial applications. Cold-rolled flat steel DC03, produced in accordance with the DIN EN 10130 and DIN EN 10152 standards, offers a number of advantages for applications in the cold forming process. While DIN EN 10130 defines the basic requirements for chemical composition, mechanical properties and surface quality, DIN EN 10152 extends these specifications to include specific conditions for electrolytically galvanized products that offer additional corrosion protection. Both standards together ensure that DC03 is a versatile material with high quality and durability.

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COLD ROLLED SHEET

QUALITY STANDARD MATERIAL NO. OLD DESIGNATION DC03 DIN EN 10130 1.0347 St 13-03 The deep drawing grade DC03 is specified according to the standard DIN EN 10130, which focuses on cold-rolled flat products made of soft steels for cold forming. This standard defines the technical requirements and test methods for cold-rolled products used in various industrial applications, particularly where high demands are placed on surface quality and mechanical properties. DC03 is a low-carbon steel characterized by excellent cold formability. The chemical composition of DC03 is precisely defined to ensure that the material has the required mechanical properties. Typically, DC03 contains a maximum of 0.10% carbon, a maximum of 0.45% manganese and traces of phosphorus and sulphur. This small amount of alloying elements contributes to the good formability and weldability of the steel. The mechanical properties of DC03 are also clearly defined. The material has a yield strength of at least 140 MPa and a tensile strength of between 270 and 370 MPa. In addition, DC03 has an elongation at break of at least 34%, which underlines its excellent formability. These properties make DC03 particularly suitable for the production of complex components that require high precision and surface quality, such as body parts in the automotive industry or household appliances. The DIN EN 10130 standard also specifies the tolerances for dimensions, shape and surface finish. These tolerances are crucial to ensure consistently high product quality and to meet the requirements of end users. The surface of the cold-rolled flat products can be supplied in various qualities, from matt to glossy, to meet the specific requirements of different applications. The DIN EN 10152 standard specifies electrolytically galvanized, cold-rolled flat steel products for cold forming, including the deep-drawing grade DC03. This standard defines the requirements for the zinc coating and the basic mechanical properties of the base material. DC03, when electrolytically galvanized in accordance with DIN EN 10152, is given an additional corrosion protection layer of zinc. This layer protects the material from oxidative influences and significantly increases the service life of the components made from it. The zinc coating can be applied in various thicknesses, depending on the specific requirements of the application. Typical coating thicknesses range from 5 to 20 µm. The chemical composition and mechanical properties of the base material DC03 remain unchanged after galvanizing and meet the requirements of DIN EN 10130. DC03 therefore retains its excellent cold formability and mechanical performance. The yield strength, tensile strength and elongation at break also remain in the same range as for ungalvanized DC03. In addition to mechanical performance, the quality of the zinc coating is of central importance. The DIN EN 10152 standard specifies the requirements for the uniformity of the coating, the adhesive strength of the zinc and the surface quality. These requirements ensure that the galvanized products offer high corrosion resistance and an aesthetically pleasing surface. The use of DC03 in accordance with DIN EN 10152 is widespread in the automotive industry, in the construction industry and in the manufacture of household appliances, where improved corrosion resistance is required in addition to high formability. Electrolytic galvanizing offers optimum protection here without impairing the excellent mechanical properties of the base material. In summary, it can be said that the deep-drawing grade DC03 offers a wide range of applications in accordance with both DIN EN 10130 and DIN EN 10152. While DIN EN 10130 focuses on high formability and surface quality, DIN EN 10152 supplements these properties with improved corrosion resistance thanks to the zinc coating. Both standards ensure that DC03 is a reliable and high-quality material for numerous industrial applications. Cold-rolled flat steel DC03, produced in accordance with the DIN EN 10130 and DIN EN 10152 standards, offers a number of advantages for applications in the cold forming process. While DIN EN 10130 defines the basic requirements for chemical composition, mechanical properties and surface quality, DIN EN 10152 extends these specifications to include specific conditions for electrolytically galvanized products that offer additional corrosion protection. Both standards together ensure that DC03 is a versatile material with high quality and durability.

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COLD ROLLED SHEET

QUALITY STANDARD MATERIAL NO. OLD DESIGNATION DC03 DIN EN 10130 1.0347 St 13-03 The deep drawing grade DC03 is specified according to the standard DIN EN 10130, which focuses on cold-rolled flat products made of soft steels for cold forming. This standard defines the technical requirements and test methods for cold-rolled products used in various industrial applications, particularly where high demands are placed on surface quality and mechanical properties. DC03 is a low-carbon steel characterized by excellent cold formability. The chemical composition of DC03 is precisely defined to ensure that the material has the required mechanical properties. Typically, DC03 contains a maximum of 0.10% carbon, a maximum of 0.45% manganese and traces of phosphorus and sulphur. This small amount of alloying elements contributes to the good formability and weldability of the steel. The mechanical properties of DC03 are also clearly defined. The material has a yield strength of at least 140 MPa and a tensile strength of between 270 and 370 MPa. In addition, DC03 has an elongation at break of at least 34%, which underlines its excellent formability. These properties make DC03 particularly suitable for the production of complex components that require high precision and surface quality, such as body parts in the automotive industry or household appliances. The DIN EN 10130 standard also specifies the tolerances for dimensions, shape and surface finish. These tolerances are crucial to ensure consistently high product quality and to meet the requirements of end users. The surface of the cold-rolled flat products can be supplied in various qualities, from matt to glossy, to meet the specific requirements of different applications. The DIN EN 10152 standard specifies electrolytically galvanized, cold-rolled flat steel products for cold forming, including the deep-drawing grade DC03. This standard defines the requirements for the zinc coating and the basic mechanical properties of the base material. DC03, when electrolytically galvanized in accordance with DIN EN 10152, is given an additional corrosion protection layer of zinc. This layer protects the material from oxidative influences and significantly increases the service life of the components made from it. The zinc coating can be applied in various thicknesses, depending on the specific requirements of the application. Typical coating thicknesses range from 5 to 20 µm. The chemical composition and mechanical properties of the base material DC03 remain unchanged after galvanizing and meet the requirements of DIN EN 10130. DC03 therefore retains its excellent cold formability and mechanical performance. The yield strength, tensile strength and elongation at break also remain in the same range as for ungalvanized DC03. In addition to mechanical performance, the quality of the zinc coating is of central importance. The DIN EN 10152 standard specifies the requirements for the uniformity of the coating, the adhesive strength of the zinc and the surface quality. These requirements ensure that the galvanized products offer high corrosion resistance and an aesthetically pleasing surface. The use of DC03 in accordance with DIN EN 10152 is widespread in the automotive industry, in the construction industry and in the manufacture of household appliances, where improved corrosion resistance is required in addition to high formability. Electrolytic galvanizing offers optimum protection here without impairing the excellent mechanical properties of the base material. In summary, it can be said that the deep-drawing grade DC03 offers a wide range of applications in accordance with both DIN EN 10130 and DIN EN 10152. While DIN EN 10130 focuses on high formability and surface quality, DIN EN 10152 supplements these properties with improved corrosion resistance thanks to the zinc coating. Both standards ensure that DC03 is a reliable and high-quality material for numerous industrial applications. Cold-rolled flat steel DC03, produced in accordance with the DIN EN 10130 and DIN EN 10152 standards, offers a number of advantages for applications in the cold forming process. While DIN EN 10130 defines the basic requirements for chemical composition, mechanical properties and surface quality, DIN EN 10152 extends these specifications to include specific conditions for electrolytically galvanized products that offer additional corrosion protection. Both standards together ensure that DC03 is a versatile material with high quality and durability.

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COLD ROLLED SHEET

QUALITY STANDARD MATERIAL NO. OLD DESIGNATION DC05 DIN EN 10130 1.0312 St 15-03 The special deep-drawing grade DC05 is specified in accordance with the DIN EN 10130 standard, which focuses on cold-rolled flat products made of soft steels for cold forming. This standard specifies the technical requirements and test methods for cold-rolled products used in numerous industrial applications, particularly where exceptional formability and excellent surface quality are required. DC05 is a low-carbon steel that is characterized by its excellent cold formability. The chemical composition of DC05 is strictly controlled to ensure that the material has the desired mechanical properties. The carbon content in DC05 is typically a maximum of 0.02 %, while the manganese content is a maximum of 0.25 %. This composition promotes the high formability and weldability of the steel. The mechanical properties of DC05 are characterized by a low yield strength of maximum 150 MPa and a tensile strength between 270 and 350 MPa. An outstanding feature of DC05 is its high elongation at break of at least 38 %, which illustrates its excellent formability. These properties make DC05 ideal for the production of complex components that require high precision and surface quality, such as body parts in the automotive industry or sophisticated components in the electrical industry. The DIN EN 10130 standard also specifies the tolerances for dimensions, shape and surface finish. These tolerances are crucial to ensure consistently high product quality and to meet the requirements of end users. The surface of the cold-rolled flat products can be supplied in various qualities, from matt to glossy, to meet the specific requirements of different applications. The DIN EN 10152 standard specifies electrolytically galvanized, cold-rolled flat steel products for cold forming, including the special deep-drawing grade DC05. This standard defines the requirements for the zinc coating and the basic mechanical properties of the base material. DC05, when electrolytically galvanized in accordance with DIN EN 10152, is given an additional corrosion protection layer of zinc. This layer protects the material from oxidative influences and significantly increases the service life of the components made from it. The zinc coating can be applied in various thicknesses, depending on the specific requirements of the application. Typical coating thicknesses range from 5 to 20 µm. The chemical composition and mechanical properties of the base material DC05 remain unchanged after galvanizing and meet the requirements of DIN EN 10130. DC05 therefore retains its excellent cold formability and mechanical performance. The yield strength, tensile strength and elongation at break also remain in the same range as for ungalvanized DC05. In addition to mechanical performance, the quality of the zinc coating is of central importance. The DIN EN 10152 standard specifies the requirements for the uniformity of the coating, the adhesive strength of the zinc and the surface quality. These requirements ensure that the galvanized products offer high corrosion resistance and an aesthetically pleasing surface. The use of DC05 in accordance with DIN EN 10152 is widespread in the automotive industry, in the construction industry and in the manufacture of household appliances, where improved corrosion resistance is required in addition to high formability. Electrolytic galvanizing offers optimum protection here without impairing the excellent mechanical properties of the base material. In summary, it can be said that the special deep-drawing grade DC05 offers a wide range of applications in accordance with both DIN EN 10130 and DIN EN 10152. While DIN EN 10130 focuses on high formability and surface quality, DIN EN 10152 supplements these properties with improved corrosion resistance thanks to the zinc coating. Both standards ensure that DC05 is a reliable and high-quality material for numerous industrial applications.

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COLD ROLLED SHEET

QUALITY STANDARD MATERIAL NO. DC06 DIN EN 10130 1.0873 The special deep-drawing grade DC06 is specified in accordance with the standard DIN EN 10130, which focuses on cold-rolled flat products made of soft steels for cold forming. This standard defines the requirements and test methods for cold-rolled products used in various industrial applications, especially where high demands are placed on formability and surface quality. DC06 is an ultra-low carbon steel characterized by outstanding cold formability. The chemical composition of DC06 is precisely defined to ensure that the material has the required mechanical properties. Typically, DC06 contains a maximum of 0.01% carbon, a maximum of 0.20% manganese and only minimal traces of phosphorus and sulphur. This small amount of alloying elements contributes to the steel’s exceptional formability and weldability. The mechanical properties of DC06 are also clearly defined. The material has a maximum yield strength of 120 MPa and a tensile strength of between 270 and 350 MPa. In addition, DC06 has an elongation at break of at least 40%, which underlines its excellent formability. These properties make DC06 particularly suitable for the production of complex and precise components that require high formability, such as deep-drawn body parts in the automotive industry or sophisticated components in the household appliance industry. The DIN EN 10130 standard also specifies the tolerances for dimensions, shape and surface finish. These tolerances are crucial to ensure consistently high product quality and to meet the requirements of the end user. The surface of the cold-rolled flat products can be supplied in various qualities, from matt to glossy, to meet the specific requirements of different applications. The DIN EN 10152 standard specifies electrolytically galvanized, cold-rolled flat steel products for cold forming, including the special deep-drawing grade DC06. This standard defines the requirements for the zinc coating and the basic mechanical properties of the base material. DC06, when electrolytically galvanized in accordance with DIN EN 10152, is given an additional corrosion protection layer of zinc. This layer protects the material from oxidative influences and significantly increases the service life of the components made from it. The zinc coating can be applied in various thicknesses, depending on the specific requirements of the application. Typical coating thicknesses range from 5 to 20 µm. The chemical composition and mechanical properties of the base material DC06 remain unchanged even after galvanizing and meet the requirements of DIN EN 10130. DC06 therefore retains its outstanding cold formability and mechanical performance. The yield strength, tensile strength and elongation at break also remain in the same range as for ungalvanized DC06. In addition to mechanical performance, the quality of the zinc coating is of central importance. The DIN EN 10152 standard specifies the requirements for the uniformity of the coating, the adhesive strength of the zinc and the surface quality. These requirements ensure that the galvanized products offer high corrosion resistance and an aesthetically pleasing surface. The use of DC06 in accordance with DIN EN 10152 is widespread in the automotive industry, in the construction industry and in the manufacture of household appliances, where improved corrosion resistance is required in addition to high formability. Electrolytic galvanizing offers optimum protection here without impairing the excellent mechanical properties of the base material. In summary, it can be said that the special deep-drawing grade DC06 offers a wide range of applications in accordance with both DIN EN 10130 and DIN EN 10152. While DIN EN 10130 focuses on outstanding formability and surface quality, DIN EN 10152 supplements these properties with improved corrosion resistance thanks to the zinc coating. Both standards ensure that DC06 is a reliable and high-quality material for numerous industrial applications.

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COLD ROLLED SHEET

QUALITY STANDARD MATERIAL NO. DC07 DIN EN 10130 1.0873 The super deep drawing grade DC07 is specified according to the standard DIN EN 10130, which focuses on cold-rolled flat products made of soft steels for cold forming. This standard ensures that the technical requirements and test methods for cold-rolled products are met, which are of great importance in various industrial applications, especially where the highest demands are placed on formability and surface quality. DC07 is a particularly low-carbon steel characterized by exceptional cold formability. The chemical composition of DC07 is strictly controlled to ensure its excellent mechanical properties. The carbon content in DC07 is typically a maximum of 0.01 %, while the manganese content is a maximum of 0.20 %. The addition of micro-alloyed elements such as titanium and niobium can further improve formability and strength. The mechanical properties of DC07 are characterized by a very low maximum yield strength of 120 MPa and a tensile strength of between 270 and 350 MPa. A particularly outstanding property of DC07 is its high elongation at break of at least 40 %, which underlines the excellent formability of the material. These properties make DC07 ideal for the production of complex components that require extremely high precision and surface quality, such as deep-drawn body parts in the automotive industry or highly complex components in the electronics industry. The DIN EN 10130 standard also specifies precise tolerances for dimensions, shape and surface finish. These tolerances are crucial to ensuring consistently high product quality and meeting the requirements of end users. The surface of the cold-rolled flat products can be supplied in various qualities, from matt to high-gloss, to meet the specific requirements of different applications. The DIN EN 10152 standard specifies electrolytically galvanized, cold-rolled steel flat products for cold forming, including the super deep-drawing grade DC07. This standard defines the requirements for the zinc coating and the basic mechanical properties of the base material. DC07, when electrolytically galvanized in accordance with DIN EN 10152, is given an additional corrosion protection layer of zinc. This layer protects the material from oxidative influences and significantly increases the service life of the components made from it. The zinc coating can be applied in various thicknesses, depending on the specific requirements of the application. Typical coating thicknesses range from 5 to 20 µm. The chemical composition and mechanical properties of the base material DC07 remain unchanged after galvanizing and meet the requirements of DIN EN 10130. DC07 therefore retains its exceptional cold formability and mechanical performance. The yield strength, tensile strength and elongation at break also remain in the same range as for non-galvanized DC07. In addition to mechanical performance, the quality of the zinc coating is of central importance. The DIN EN 10152 standard specifies the requirements for the uniformity of the coating, the adhesive strength of the zinc and the surface quality. These requirements ensure that the galvanized products offer high corrosion resistance and an aesthetically pleasing surface. The use of DC07 in accordance with DIN EN 10152 is widespread in the automotive industry, the construction industry and in the manufacture of household appliances, where improved corrosion resistance is required in addition to high formability. Electrolytic galvanizing offers optimum protection here without impairing the excellent mechanical properties of the base material. In summary, it can be said that the DC07 super deep-drawing grade offers a wide range of applications in accordance with both DIN EN 10130 and DIN EN 10152. While DIN EN 10130 focuses on excellent formability and surface quality, DIN EN 10152 supplements these properties with improved corrosion resistance thanks to the zinc coating. Both standards ensure that DC07 is a reliable and high-quality material for numerous industrial applications.

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COLD ROLLED SHEET

QUALITY STANDARD MATERIAL NO. DC07 DIN EN 10130 1.0873 The super deep drawing grade DC07 is specified according to the standard DIN EN 10130, which focuses on cold-rolled flat products made of soft steels for cold forming. This standard ensures that the technical requirements and test methods for cold-rolled products are met, which are of great importance in various industrial applications, especially where the highest demands are placed on formability and surface quality. DC07 is a particularly low-carbon steel characterized by exceptional cold formability. The chemical composition of DC07 is strictly controlled to ensure its excellent mechanical properties. The carbon content in DC07 is typically a maximum of 0.01 %, while the manganese content is a maximum of 0.20 %. The addition of micro-alloyed elements such as titanium and niobium can further improve formability and strength. The mechanical properties of DC07 are characterized by a very low maximum yield strength of 120 MPa and a tensile strength of between 270 and 350 MPa. A particularly outstanding property of DC07 is its high elongation at break of at least 40 %, which underlines the excellent formability of the material. These properties make DC07 ideal for the production of complex components that require extremely high precision and surface quality, such as deep-drawn body parts in the automotive industry or highly complex components in the electronics industry. The DIN EN 10130 standard also specifies precise tolerances for dimensions, shape and surface finish. These tolerances are crucial to ensuring consistently high product quality and meeting the requirements of end users. The surface of the cold-rolled flat products can be supplied in various qualities, from matt to high-gloss, to meet the specific requirements of different applications. The DIN EN 10152 standard specifies electrolytically galvanized, cold-rolled steel flat products for cold forming, including the super deep-drawing grade DC07. This standard defines the requirements for the zinc coating and the basic mechanical properties of the base material. DC07, when electrolytically galvanized in accordance with DIN EN 10152, is given an additional corrosion protection layer of zinc. This layer protects the material from oxidative influences and significantly increases the service life of the components made from it. The zinc coating can be applied in various thicknesses, depending on the specific requirements of the application. Typical coating thicknesses range from 5 to 20 µm. The chemical composition and mechanical properties of the base material DC07 remain unchanged after galvanizing and meet the requirements of DIN EN 10130. DC07 therefore retains its exceptional cold formability and mechanical performance. The yield strength, tensile strength and elongation at break also remain in the same range as for non-galvanized DC07. In addition to mechanical performance, the quality of the zinc coating is of central importance. The DIN EN 10152 standard specifies the requirements for the uniformity of the coating, the adhesive strength of the zinc and the surface quality. These requirements ensure that the galvanized products offer high corrosion resistance and an aesthetically pleasing surface. The use of DC07 in accordance with DIN EN 10152 is widespread in the automotive industry, the construction industry and in the manufacture of household appliances, where improved corrosion resistance is required in addition to high formability. Electrolytic galvanizing offers optimum protection here without impairing the excellent mechanical properties of the base material. In summary, it can be said that the DC07 super deep-drawing grade offers a wide range of applications in accordance with both DIN EN 10130 and DIN EN 10152. While DIN EN 10130 focuses on excellent formability and surface quality, DIN EN 10152 supplements these properties with improved corrosion resistance thanks to the zinc coating. Both standards ensure that DC07 is a reliable and high-quality material for numerous industrial applications.

68179d65be22ee500d53ff54 Card 2

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COLD ROLLED SHEET

QUALITY STANDARD MATERIAL NO. DC07 DIN EN 10130 1.0873 The super deep drawing grade DC07 is specified according to the standard DIN EN 10130, which focuses on cold-rolled flat products made of soft steels for cold forming. This standard ensures that the technical requirements and test methods for cold-rolled products are met, which are of great importance in various industrial applications, especially where the highest demands are placed on formability and surface quality. DC07 is a particularly low-carbon steel characterized by exceptional cold formability. The chemical composition of DC07 is strictly controlled to ensure its excellent mechanical properties. The carbon content in DC07 is typically a maximum of 0.01 %, while the manganese content is a maximum of 0.20 %. The addition of micro-alloyed elements such as titanium and niobium can further improve formability and strength. The mechanical properties of DC07 are characterized by a very low maximum yield strength of 120 MPa and a tensile strength of between 270 and 350 MPa. A particularly outstanding property of DC07 is its high elongation at break of at least 40 %, which underlines the excellent formability of the material. These properties make DC07 ideal for the production of complex components that require extremely high precision and surface quality, such as deep-drawn body parts in the automotive industry or highly complex components in the electronics industry. The DIN EN 10130 standard also specifies precise tolerances for dimensions, shape and surface finish. These tolerances are crucial to ensuring consistently high product quality and meeting the requirements of end users. The surface of the cold-rolled flat products can be supplied in various qualities, from matt to high-gloss, to meet the specific requirements of different applications. The DIN EN 10152 standard specifies electrolytically galvanized, cold-rolled steel flat products for cold forming, including the super deep-drawing grade DC07. This standard defines the requirements for the zinc coating and the basic mechanical properties of the base material. DC07, when electrolytically galvanized in accordance with DIN EN 10152, is given an additional corrosion protection layer of zinc. This layer protects the material from oxidative influences and significantly increases the service life of the components made from it. The zinc coating can be applied in various thicknesses, depending on the specific requirements of the application. Typical coating thicknesses range from 5 to 20 µm. The chemical composition and mechanical properties of the base material DC07 remain unchanged after galvanizing and meet the requirements of DIN EN 10130. DC07 therefore retains its exceptional cold formability and mechanical performance. The yield strength, tensile strength and elongation at break also remain in the same range as for non-galvanized DC07. In addition to mechanical performance, the quality of the zinc coating is of central importance. The DIN EN 10152 standard specifies the requirements for the uniformity of the coating, the adhesive strength of the zinc and the surface quality. These requirements ensure that the galvanized products offer high corrosion resistance and an aesthetically pleasing surface. The use of DC07 in accordance with DIN EN 10152 is widespread in the automotive industry, the construction industry and in the manufacture of household appliances, where improved corrosion resistance is required in addition to high formability. Electrolytic galvanizing offers optimum protection here without impairing the excellent mechanical properties of the base material. In summary, it can be said that the DC07 super deep-drawing grade offers a wide range of applications in accordance with both DIN EN 10130 and DIN EN 10152. While DIN EN 10130 focuses on excellent formability and surface quality, DIN EN 10152 supplements these properties with improved corrosion resistance thanks to the zinc coating. Both standards ensure that DC07 is a reliable and high-quality material for numerous industrial applications.

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COLD ROLLED SHEET

QUALITY STANDARD MATERIAL NO. DC06 DIN EN 10130 1.0873 The special deep-drawing grade DC06 is specified in accordance with the standard DIN EN 10130, which focuses on cold-rolled flat products made of soft steels for cold forming. This standard defines the requirements and test methods for cold-rolled products used in various industrial applications, especially where high demands are placed on formability and surface quality. DC06 is an ultra-low carbon steel characterized by outstanding cold formability. The chemical composition of DC06 is precisely defined to ensure that the material has the required mechanical properties. Typically, DC06 contains a maximum of 0.01% carbon, a maximum of 0.20% manganese and only minimal traces of phosphorus and sulphur. This small amount of alloying elements contributes to the steel’s exceptional formability and weldability. The mechanical properties of DC06 are also clearly defined. The material has a maximum yield strength of 120 MPa and a tensile strength of between 270 and 350 MPa. In addition, DC06 has an elongation at break of at least 40%, which underlines its excellent formability. These properties make DC06 particularly suitable for the production of complex and precise components that require high formability, such as deep-drawn body parts in the automotive industry or sophisticated components in the household appliance industry. The DIN EN 10130 standard also specifies the tolerances for dimensions, shape and surface finish. These tolerances are crucial to ensure consistently high product quality and to meet the requirements of the end user. The surface of the cold-rolled flat products can be supplied in various qualities, from matt to glossy, to meet the specific requirements of different applications. The DIN EN 10152 standard specifies electrolytically galvanized, cold-rolled flat steel products for cold forming, including the special deep-drawing grade DC06. This standard defines the requirements for the zinc coating and the basic mechanical properties of the base material. DC06, when electrolytically galvanized in accordance with DIN EN 10152, is given an additional corrosion protection layer of zinc. This layer protects the material from oxidative influences and significantly increases the service life of the components made from it. The zinc coating can be applied in various thicknesses, depending on the specific requirements of the application. Typical coating thicknesses range from 5 to 20 µm. The chemical composition and mechanical properties of the base material DC06 remain unchanged even after galvanizing and meet the requirements of DIN EN 10130. DC06 therefore retains its outstanding cold formability and mechanical performance. The yield strength, tensile strength and elongation at break also remain in the same range as for ungalvanized DC06. In addition to mechanical performance, the quality of the zinc coating is of central importance. The DIN EN 10152 standard specifies the requirements for the uniformity of the coating, the adhesive strength of the zinc and the surface quality. These requirements ensure that the galvanized products offer high corrosion resistance and an aesthetically pleasing surface. The use of DC06 in accordance with DIN EN 10152 is widespread in the automotive industry, in the construction industry and in the manufacture of household appliances, where improved corrosion resistance is required in addition to high formability. Electrolytic galvanizing offers optimum protection here without impairing the excellent mechanical properties of the base material. In summary, it can be said that the special deep-drawing grade DC06 offers a wide range of applications in accordance with both DIN EN 10130 and DIN EN 10152. While DIN EN 10130 focuses on outstanding formability and surface quality, DIN EN 10152 supplements these properties with improved corrosion resistance thanks to the zinc coating. Both standards ensure that DC06 is a reliable and high-quality material for numerous industrial applications.

68179d65be22ee500d53ff54 Card 2

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COLD ROLLED SHEET

QUALITY STANDARD MATERIAL NO. DC06 DIN EN 10130 1.0873 The special deep-drawing grade DC06 is specified in accordance with the standard DIN EN 10130, which focuses on cold-rolled flat products made of soft steels for cold forming. This standard defines the requirements and test methods for cold-rolled products used in various industrial applications, especially where high demands are placed on formability and surface quality. DC06 is an ultra-low carbon steel characterized by outstanding cold formability. The chemical composition of DC06 is precisely defined to ensure that the material has the required mechanical properties. Typically, DC06 contains a maximum of 0.01% carbon, a maximum of 0.20% manganese and only minimal traces of phosphorus and sulphur. This small amount of alloying elements contributes to the steel’s exceptional formability and weldability. The mechanical properties of DC06 are also clearly defined. The material has a maximum yield strength of 120 MPa and a tensile strength of between 270 and 350 MPa. In addition, DC06 has an elongation at break of at least 40%, which underlines its excellent formability. These properties make DC06 particularly suitable for the production of complex and precise components that require high formability, such as deep-drawn body parts in the automotive industry or sophisticated components in the household appliance industry. The DIN EN 10130 standard also specifies the tolerances for dimensions, shape and surface finish. These tolerances are crucial to ensure consistently high product quality and to meet the requirements of the end user. The surface of the cold-rolled flat products can be supplied in various qualities, from matt to glossy, to meet the specific requirements of different applications. The DIN EN 10152 standard specifies electrolytically galvanized, cold-rolled flat steel products for cold forming, including the special deep-drawing grade DC06. This standard defines the requirements for the zinc coating and the basic mechanical properties of the base material. DC06, when electrolytically galvanized in accordance with DIN EN 10152, is given an additional corrosion protection layer of zinc. This layer protects the material from oxidative influences and significantly increases the service life of the components made from it. The zinc coating can be applied in various thicknesses, depending on the specific requirements of the application. Typical coating thicknesses range from 5 to 20 µm. The chemical composition and mechanical properties of the base material DC06 remain unchanged even after galvanizing and meet the requirements of DIN EN 10130. DC06 therefore retains its outstanding cold formability and mechanical performance. The yield strength, tensile strength and elongation at break also remain in the same range as for ungalvanized DC06. In addition to mechanical performance, the quality of the zinc coating is of central importance. The DIN EN 10152 standard specifies the requirements for the uniformity of the coating, the adhesive strength of the zinc and the surface quality. These requirements ensure that the galvanized products offer high corrosion resistance and an aesthetically pleasing surface. The use of DC06 in accordance with DIN EN 10152 is widespread in the automotive industry, in the construction industry and in the manufacture of household appliances, where improved corrosion resistance is required in addition to high formability. Electrolytic galvanizing offers optimum protection here without impairing the excellent mechanical properties of the base material. In summary, it can be said that the special deep-drawing grade DC06 offers a wide range of applications in accordance with both DIN EN 10130 and DIN EN 10152. While DIN EN 10130 focuses on outstanding formability and surface quality, DIN EN 10152 supplements these properties with improved corrosion resistance thanks to the zinc coating. Both standards ensure that DC06 is a reliable and high-quality material for numerous industrial applications.

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COLD ROLLED SHEET

QUALITY STANDARD MATERIAL NO. OLD DESIGNATION DC05 DIN EN 10130 1.0312 St 15-03 The special deep-drawing grade DC05 is specified in accordance with the DIN EN 10130 standard, which focuses on cold-rolled flat products made of soft steels for cold forming. This standard specifies the technical requirements and test methods for cold-rolled products used in numerous industrial applications, particularly where exceptional formability and excellent surface quality are required. DC05 is a low-carbon steel that is characterized by its excellent cold formability. The chemical composition of DC05 is strictly controlled to ensure that the material has the desired mechanical properties. The carbon content in DC05 is typically a maximum of 0.02 %, while the manganese content is a maximum of 0.25 %. This composition promotes the high formability and weldability of the steel. The mechanical properties of DC05 are characterized by a low yield strength of maximum 150 MPa and a tensile strength between 270 and 350 MPa. An outstanding feature of DC05 is its high elongation at break of at least 38 %, which illustrates its excellent formability. These properties make DC05 ideal for the production of complex components that require high precision and surface quality, such as body parts in the automotive industry or sophisticated components in the electrical industry. The DIN EN 10130 standard also specifies the tolerances for dimensions, shape and surface finish. These tolerances are crucial to ensure consistently high product quality and to meet the requirements of end users. The surface of the cold-rolled flat products can be supplied in various qualities, from matt to glossy, to meet the specific requirements of different applications. The DIN EN 10152 standard specifies electrolytically galvanized, cold-rolled flat steel products for cold forming, including the special deep-drawing grade DC05. This standard defines the requirements for the zinc coating and the basic mechanical properties of the base material. DC05, when electrolytically galvanized in accordance with DIN EN 10152, is given an additional corrosion protection layer of zinc. This layer protects the material from oxidative influences and significantly increases the service life of the components made from it. The zinc coating can be applied in various thicknesses, depending on the specific requirements of the application. Typical coating thicknesses range from 5 to 20 µm. The chemical composition and mechanical properties of the base material DC05 remain unchanged after galvanizing and meet the requirements of DIN EN 10130. DC05 therefore retains its excellent cold formability and mechanical performance. The yield strength, tensile strength and elongation at break also remain in the same range as for ungalvanized DC05. In addition to mechanical performance, the quality of the zinc coating is of central importance. The DIN EN 10152 standard specifies the requirements for the uniformity of the coating, the adhesive strength of the zinc and the surface quality. These requirements ensure that the galvanized products offer high corrosion resistance and an aesthetically pleasing surface. The use of DC05 in accordance with DIN EN 10152 is widespread in the automotive industry, in the construction industry and in the manufacture of household appliances, where improved corrosion resistance is required in addition to high formability. Electrolytic galvanizing offers optimum protection here without impairing the excellent mechanical properties of the base material. In summary, it can be said that the special deep-drawing grade DC05 offers a wide range of applications in accordance with both DIN EN 10130 and DIN EN 10152. While DIN EN 10130 focuses on high formability and surface quality, DIN EN 10152 supplements these properties with improved corrosion resistance thanks to the zinc coating. Both standards ensure that DC05 is a reliable and high-quality material for numerous industrial applications.

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COLD ROLLED SHEET

QUALITY STANDARD MATERIAL NO. OLD DESIGNATION DC04 DIN EN 10130 1.0338 St 14-03 The special deep-drawing grade DC04 is specified in accordance with the standard DIN EN 10130, which focuses on cold-rolled flat products made of soft steels for cold forming. This standard specifies the technical requirements and test methods for cold-rolled products that are important in numerous industrial applications, especially where high formability and excellent surface quality are required. DC04 is a low-carbon steel that impresses with its exceptional cold formability. The chemical composition of DC04 is precisely balanced to ensure that the material has the desired mechanical properties. The carbon content in DC04 is typically a maximum of 0.08 %, while the manganese content is a maximum of 0.40 %. This composition supports the high formability and weldability of the steel, making it ideal for demanding forming processes. The mechanical properties of DC04 are characterized by a low yield strength of maximum 210 MPa and a tensile strength between 270 and 350 MPa. Particularly noteworthy is the high elongation at break of at least 38%, which illustrates the excellent formability of the material. These properties make DC04 a preferred choice for the production of complex components that require high precision and surface quality, such as car body components in the automotive industry or filigree parts in the electronics industry. The DIN EN 10130 standard also specifies the tolerances for dimensions, shape and surface finish. These tolerances are crucial to ensure consistently high product quality and to meet the requirements of end users. The surface of the cold-rolled flat products can be supplied in various qualities, from matt to high-gloss, to meet the specific requirements of different applications. The DIN EN 10152 standard specifies electrolytically galvanized, cold-rolled flat steel products for cold forming, including the special deep-drawing grade DC04. This standard defines the requirements for the zinc coating and the basic mechanical properties of the base material. DC04, when electrolytically galvanized in accordance with DIN EN 10152, is given an additional corrosion protection layer of zinc. This layer protects the material from oxidative influences and significantly increases the service life of the components made from it. The zinc coating can be applied in various thicknesses, depending on the specific requirements of the application. Typical coating thicknesses range from 5 to 20 µm. The chemical composition and mechanical properties of the base material DC04 remain unchanged even after galvanizing and meet the requirements of DIN EN 10130. DC04 therefore retains its excellent cold formability and mechanical performance. In addition to mechanical performance, the quality of the zinc coating is of central importance. The DIN EN 10152 standard specifies the requirements for the uniformity of the coating, the adhesive strength of the zinc and the surface quality. These requirements ensure that the galvanized products offer high corrosion resistance and an aesthetically pleasing surface. The use of DC04 in accordance with DIN EN 10152 is widespread in the automotive industry, the construction industry and in the manufacture of household appliances, where improved corrosion resistance is required in addition to high formability. Electrolytic galvanizing offers optimum protection here without impairing the excellent mechanical properties of the base material. DC04 and DC01 are both cold-rolled, unalloyed quality steels that are used for various industrial applications. While DC01 serves as the standard grade for general cold forming processes, DC04 is characterized by improved deep-drawing properties and higher ductility. This comparison highlights the differences between the two materials in terms of chemical composition, mechanical properties and typical applications. Chemical composition The chemical composition influences the formability and weldability of the steel. Both steels are made of carbon steel, but DC04 has a lower carbon content, which supports its improved cold formability. Thanks to the lower carbon and Sulphur content, DC04 offers improved deep-drawing capability as less intergranular embrittlement occurs. Mechanical properties The mechanical properties are decisive for the forming processes and the behavior of the steel under load. DC04 has a lower yield strength and higher elongation, which makes the material easier to form. The lower yield strength and increased minimum elongation of DC04 make this material ideal for demanding forming processes such as deep drawing.

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COLD ROLLED SHEET

QUALITY STANDARD MATERIAL NO. OLD DESIGNATION DC04 DIN EN 10130 1.0338 St 14-03 The special deep-drawing grade DC04 is specified in accordance with the standard DIN EN 10130, which focuses on cold-rolled flat products made of soft steels for cold forming. This standard specifies the technical requirements and test methods for cold-rolled products that are important in numerous industrial applications, especially where high formability and excellent surface quality are required. DC04 is a low-carbon steel that impresses with its exceptional cold formability. The chemical composition of DC04 is precisely balanced to ensure that the material has the desired mechanical properties. The carbon content in DC04 is typically a maximum of 0.08 %, while the manganese content is a maximum of 0.40 %. This composition supports the high formability and weldability of the steel, making it ideal for demanding forming processes. The mechanical properties of DC04 are characterized by a low yield strength of maximum 210 MPa and a tensile strength between 270 and 350 MPa. Particularly noteworthy is the high elongation at break of at least 38%, which illustrates the excellent formability of the material. These properties make DC04 a preferred choice for the production of complex components that require high precision and surface quality, such as car body components in the automotive industry or filigree parts in the electronics industry. The DIN EN 10130 standard also specifies the tolerances for dimensions, shape and surface finish. These tolerances are crucial to ensure consistently high product quality and to meet the requirements of end users. The surface of the cold-rolled flat products can be supplied in various qualities, from matt to high-gloss, to meet the specific requirements of different applications. The DIN EN 10152 standard specifies electrolytically galvanized, cold-rolled flat steel products for cold forming, including the special deep-drawing grade DC04. This standard defines the requirements for the zinc coating and the basic mechanical properties of the base material. DC04, when electrolytically galvanized in accordance with DIN EN 10152, is given an additional corrosion protection layer of zinc. This layer protects the material from oxidative influences and significantly increases the service life of the components made from it. The zinc coating can be applied in various thicknesses, depending on the specific requirements of the application. Typical coating thicknesses range from 5 to 20 µm. The chemical composition and mechanical properties of the base material DC04 remain unchanged even after galvanizing and meet the requirements of DIN EN 10130. DC04 therefore retains its excellent cold formability and mechanical performance. In addition to mechanical performance, the quality of the zinc coating is of central importance. The DIN EN 10152 standard specifies the requirements for the uniformity of the coating, the adhesive strength of the zinc and the surface quality. These requirements ensure that the galvanized products offer high corrosion resistance and an aesthetically pleasing surface. The use of DC04 in accordance with DIN EN 10152 is widespread in the automotive industry, the construction industry and in the manufacture of household appliances, where improved corrosion resistance is required in addition to high formability. Electrolytic galvanizing offers optimum protection here without impairing the excellent mechanical properties of the base material. DC04 and DC01 are both cold-rolled, unalloyed quality steels that are used for various industrial applications. While DC01 serves as the standard grade for general cold forming processes, DC04 is characterized by improved deep-drawing properties and higher ductility. This comparison highlights the differences between the two materials in terms of chemical composition, mechanical properties and typical applications. Chemical composition The chemical composition influences the formability and weldability of the steel. Both steels are made of carbon steel, but DC04 has a lower carbon content, which supports its improved cold formability. Thanks to the lower carbon and Sulphur content, DC04 offers improved deep-drawing capability as less intergranular embrittlement occurs. Mechanical properties The mechanical properties are decisive for the forming processes and the behavior of the steel under load. DC04 has a lower yield strength and higher elongation, which makes the material easier to form. The lower yield strength and increased minimum elongation of DC04 make this material ideal for demanding forming processes such as deep drawing.

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COLD ROLLED SHEET

QUALITY STANDARD MATERIAL NO. OLD DESIGNATION DC04 DIN EN 10130 1.0338 St 14-03 The special deep-drawing grade DC04 is specified in accordance with the standard DIN EN 10130, which focuses on cold-rolled flat products made of soft steels for cold forming. This standard specifies the technical requirements and test methods for cold-rolled products that are important in numerous industrial applications, especially where high formability and excellent surface quality are required. DC04 is a low-carbon steel that impresses with its exceptional cold formability. The chemical composition of DC04 is precisely balanced to ensure that the material has the desired mechanical properties. The carbon content in DC04 is typically a maximum of 0.08 %, while the manganese content is a maximum of 0.40 %. This composition supports the high formability and weldability of the steel, making it ideal for demanding forming processes. The mechanical properties of DC04 are characterized by a low yield strength of maximum 210 MPa and a tensile strength between 270 and 350 MPa. Particularly noteworthy is the high elongation at break of at least 38%, which illustrates the excellent formability of the material. These properties make DC04 a preferred choice for the production of complex components that require high precision and surface quality, such as car body components in the automotive industry or filigree parts in the electronics industry. The DIN EN 10130 standard also specifies the tolerances for dimensions, shape and surface finish. These tolerances are crucial to ensure consistently high product quality and to meet the requirements of end users. The surface of the cold-rolled flat products can be supplied in various qualities, from matt to high-gloss, to meet the specific requirements of different applications. The DIN EN 10152 standard specifies electrolytically galvanized, cold-rolled flat steel products for cold forming, including the special deep-drawing grade DC04. This standard defines the requirements for the zinc coating and the basic mechanical properties of the base material. DC04, when electrolytically galvanized in accordance with DIN EN 10152, is given an additional corrosion protection layer of zinc. This layer protects the material from oxidative influences and significantly increases the service life of the components made from it. The zinc coating can be applied in various thicknesses, depending on the specific requirements of the application. Typical coating thicknesses range from 5 to 20 µm. The chemical composition and mechanical properties of the base material DC04 remain unchanged even after galvanizing and meet the requirements of DIN EN 10130. DC04 therefore retains its excellent cold formability and mechanical performance. In addition to mechanical performance, the quality of the zinc coating is of central importance. The DIN EN 10152 standard specifies the requirements for the uniformity of the coating, the adhesive strength of the zinc and the surface quality. These requirements ensure that the galvanized products offer high corrosion resistance and an aesthetically pleasing surface. The use of DC04 in accordance with DIN EN 10152 is widespread in the automotive industry, the construction industry and in the manufacture of household appliances, where improved corrosion resistance is required in addition to high formability. Electrolytic galvanizing offers optimum protection here without impairing the excellent mechanical properties of the base material. DC04 and DC01 are both cold-rolled, unalloyed quality steels that are used for various industrial applications. While DC01 serves as the standard grade for general cold forming processes, DC04 is characterized by improved deep-drawing properties and higher ductility. This comparison highlights the differences between the two materials in terms of chemical composition, mechanical properties and typical applications. Chemical composition The chemical composition influences the formability and weldability of the steel. Both steels are made of carbon steel, but DC04 has a lower carbon content, which supports its improved cold formability. Thanks to the lower carbon and Sulphur content, DC04 offers improved deep-drawing capability as less intergranular embrittlement occurs. Mechanical properties The mechanical properties are decisive for the forming processes and the behavior of the steel under load. DC04 has a lower yield strength and higher elongation, which makes the material easier to form. The lower yield strength and increased minimum elongation of DC04 make this material ideal for demanding forming processes such as deep drawing.

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U Type Outer Half Round Tube Shield

Half Round Tube Shield Half Round Tube Shields by Ladhani Metal Corporation are precision-engineered components used to protect boiler and heat exchanger tubes from erosion, scaling, and high-temperature corrosion. These shields are widely applied in industrial systems exposed to thermal cycling, aggressive gases, and particulate flow. Their half-round shape allows for simple and secure installation over straight or curved tube surfaces, extending tube life and reducing maintenance needs. SS 304L U Type Outer Half Round Tube Shield The SS 304L U Type Outer Half Round Tube Shield is manufactured from low-carbon austenitic stainless steel, SS 304L, offering enhanced weldability and resistance to intergranular corrosion. This shield is specifically designed to protect the outer curvature of U-bend tubes in high-temperature and moderately corrosive environments such as boilers, superheaters, and heat exchangers. The outer U-type configuration focuses on shielding the most exposed area of return bends from flue gas erosion, slag impact, and thermal oxidation. • Outer U Type Half Round Tube Shield – Provides targeted protection to the external arc of U-bend tubes, reducing surface degradation caused by hot gas streams and mechanical wear. Ladhani Metal Corporation supplies SS 304L U Type Outer Half Round Tube Shields with precision-engineered profiles to ensure long-term performance and durability in harsh industrial conditions. Chemical Composition of SS 304L – Low-Carbon Austenitic Stainless Steel • Carbon (C): ≤ 0.035% • Manganese (Mn): ≤ 2.00% • Phosphorus (P): ≤ 0.045% • Sulfur (S): ≤ 0.030% • Silicon (Si): ≤ 1.00% • Chromium (Cr): 18.0 – 20.0% • Nickel (Ni): 8.0 – 12.0% • Iron (Fe): Balance Applications: Well-suited for moderately corrosive, high-temperature environments where resistance to weld decay and oxidation is required. Uses • Protection of outer U-bend surfaces in superheaters and reheaters in thermal power generation systems • Shielding external arcs in heat exchangers and condensers in the chemical and petrochemical industries • Outer bend coverage in waste heat recovery boilers (WHRBs) and HRSGs exposed to flue gases and particulate flow • Used in marine, food-grade, and process steam systems where chloride resistance and cleanliness are important • Ideal for systems requiring excellent weldability and post-fabrication corrosion resistance Features • Excellent corrosion resistance – Low carbon content improves resistance to intergranular corrosion after welding or high-heat exposure. • Outer U-bend protection – Specifically shaped to guard the outer surface of U-bend tubes from high-temperature gas flow and slag contact. • High-temperature performance – Performs reliably in temperatures up to 870°C, resisting scale formation and oxidation. • Custom fit – Engineered to precisely match tube diameters and bend radii for a snug and stable fit without displacement. • Easy to install – Can be quickly mounted using clamps, stainless banding, or tack welds without requiring system downtime or disassembly. • Long service life – Withstands thermal cycling and corrosive gas exposure to minimize tube damage and maintenance intervals. Applications • power plants – Used in superheaters and reheaters for protecting the outer arcs of return bends from flue gas and heat-related scaling. • chemical processing – Shields tube surfaces in exchangers and preheaters that experience moderate chemical attack and thermal fatigue. • WHRBs and HRSGs – Installed on outer curves of U-bend tubes to prevent erosion and reduce downtime in heat recovery systems. • marine and coastal facilities – Suitable for salt-laden environments where chloride resistance is essential for sustained performance. • food, beverage, and clean process industries – Provides hygienic protection for tube bends in steam and thermal processing systems. Conclusion The SS 304L U Type Outer Half Round Tube Shield by Ladhani Metal Corporation offers dependable protection for the most vulnerable outer surfaces of U-bend tubes in high-temperature and moderately corrosive applications. With its low-carbon alloy composition, it combines superior corrosion resistance with excellent weldability, making it ideal for power generation, petrochemical, marine, and process industries. Customizable to your system’s specifications, this shield ensures long-lasting performance, reduced maintenance, and improved system reliability. For technical consultation, custom orders, or quotations, please contact Ladhani Metal Corporation.

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Titanium flanges

DIN 2634 titanium flanges PN 25 are high-performance weld neck flanges manufactured in accordance with the DIN 2634 standard. Specifically engineered for high-pressure applications up to 25 bar (362 psi), these flanges are made from premium titanium grades, offering exceptional corrosion resistance, low density, and outstanding mechanical strength even in the most demanding environments. Their lightweight yet highly durable nature makes them ideal for aggressive service conditions where conventional metal flanges may fail. Ladhani Metal Corporation is a trusted global manufacturer and supplier of titanium flanges, known for advanced manufacturing capabilities, precision machining, and strict adherence to international quality standards. Each flange undergoes thorough inspection and testing to ensure long-term reliability, safety, and resistance to extreme operating conditions. Pressure Rating: • PN 25 (25 bar / 362 psi): Designed for high-pressure systems requiring corrosion-resistant and mechanically robust flange connections. Flange Type: • Weld Neck Flanges Featuring an extended tapered hub, weld neck flanges provide excellent stress distribution at the base, ensuring strong and leak-proof joints in systems exposed to high pressure and thermal cycling. • Flat Face (FF) Flanges Ideal for use with softer gasket materials or in systems connecting to cast components, flat face flanges offer consistent and uniform gasket compression. Titanium Grades and Typical Composition: Titanium Grade 2 (UNS R50400) – Commercially Pure Titanium • Titanium (Ti): ≥ 98.9% • Iron (Fe): ≤ 0.30% • Oxygen (O): ≤ 0.25% • Carbon (C): ≤ 0.08% • Nitrogen (N): ≤ 0.03% • Hydrogen (H): ≤ 0.015% Applications: Preferred in seawater service, chemical processing, and marine equipment where high corrosion resistance in oxidizing environments is required. Titanium Grade 5 (Ti-6Al-4V / UNS R56400) – Alloyed Titanium • Titanium (Ti): Balance • Aluminum (Al): 5.5 – 6.75% • Vanadium (V): 3.5 – 4.5% • Iron (Fe): ≤ 0.40% • Oxygen (O): ≤ 0.20% Applications: Used in high-strength and high-temperature applications, including aerospace systems, pressure vessels, and heat exchangers due to its superior strength-to-weight ratio and fatigue resistance. Applications of DIN 2634 Titanium Flanges PN 25: • Offshore and Marine Systems Resists corrosion from seawater and brine solutions while maintaining strength under pressure. • Chemical and Petrochemical Processing Ideal for transporting corrosive media such as chlorine, acids, and alkalis at elevated pressures. • Desalination Plants Performs exceptionally in salt-laden and high-pressure water processing systems. • Aerospace and Defense Equipment Used in high-performance fluid systems requiring lightweight and high-strength components. • Pharmaceutical and Medical Systems Applied in ultra-clean and sterile environments where corrosion-free operation is essential. Key Features: • Manufactured in accordance with DIN 2634 dimensional and pressure requirements • PN 25 pressure rating supports high-pressure applications • Lightweight construction reduces system weight without compromising strength • Exceptional resistance to corrosion, erosion, and high-temperature oxidation • Weld neck configuration ensures strong, vibration-resistant joints • Available in commercially pure and alloyed titanium grades • Custom sizes, pressure classes, and surface finishes available upon request Conclusion: DIN 2634 titanium flanges PN 25 from Ladhani Metal Corporation are engineered to perform in extreme conditions where high pressure, aggressive media, and corrosion resistance are critical. With superior mechanical strength and long-term durability, these titanium flanges are ideal for advanced applications in marine, chemical, aerospace, and industrial systems. For technical consultations, specialized requirements, or pricing information, contact Ladhani Metal Corporation today.

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Inconel flanges

DIN 2632 Inconel flanges PN 10 are precision-engineered weld neck flanges manufactured in accordance with the DIN 2632 standard. Designed for medium-pressure applications up to 10 bar (145 psi), these flanges offer exceptional resistance to high temperatures, oxidation, and aggressive chemical environments. Produced using high-performance Inconel alloys, they ensure reliable operation in highly corrosive and thermally demanding industrial systems. Ladhani Metal Corporation is a globally recognized manufacturer and supplier of Inconel flanges, known for engineering excellence and stringent quality control. Each flange undergoes rigorous testing to meet relevant industrial specifications and environmental safety standards. Pressure Rating: • PN 10 (10 bar / 145 psi): Suitable for medium-pressure pipeline systems requiring superior corrosion and temperature resistance. Flange Type: • Weld Neck Flanges Engineered with a long tapered hub to ensure accurate pipe alignment and minimize stress concentration at the flange base. This design allows smoother fluid flow and reinforces joint strength. • Flat Face (FF) Flanges Flat face configuration ensures even gasket compression, especially suited for systems using soft gaskets or mating with cast components. Inconel Grades and Composition: Inconel 600 • Nickel (Ni): 72.0% minimum • Chromium (Cr): 14.0–17.0% • Iron (Fe): 6.0–10.0% • Carbon (C): ≤ 0.15% • Manganese (Mn): ≤ 1.0% • Silicon (Si): ≤ 0.5% Applications: Inconel 600 offers excellent resistance to high-temperature oxidation and corrosion. Commonly used in chemical processing, food industry heat exchangers, and marine exhaust systems. Inconel 625 • Nickel (Ni): Balance • Chromium (Cr): 20.0–23.0% • Molybdenum (Mo): 8.0–10.0% • Niobium (Nb): 3.15–4.15% • Iron (Fe): ≤ 5.0% • Carbon (C): ≤ 0.10% • Manganese (Mn): ≤ 0.50% • Silicon (Si): ≤ 0.50% Applications: Inconel 625 is known for its outstanding fatigue strength and resistance to pitting, crevice corrosion, and stress corrosion cracking. It is widely used in marine, chemical, aerospace, and nuclear sectors. Inconel 718 • Nickel (Ni): 50–55% • Chromium (Cr): 17–21% • Iron (Fe): Balance • Niobium (Nb): 4.75–5.5% • Molybdenum (Mo): 2.8–3.3% • Titanium (Ti): 0.65–1.15% • Aluminum (Al): 0.2–0.8% • Cobalt (Co): ≤ 1.0% • Carbon (C): ≤ 0.08% Applications: Inconel 718 offers exceptional tensile, fatigue, and creep resistance at temperatures up to 700°C. It is extensively used in aerospace engines, gas turbines, nuclear reactors, and high-performance industrial equipment where superior mechanical strength and corrosion resistance are required. Applications of DIN 2632 Inconel Flanges PN 10: • Chemical and Petrochemical Industry Ideal for systems carrying corrosive chemicals, acids, and oxidizing agents at elevated temperatures. • Marine and Offshore Used in saltwater piping, offshore platforms, and naval systems requiring materials with high corrosion and heat resistance. • Power Generation Suitable for high-temperature applications in power plants, heat exchangers, and turbine systems. • Aerospace and Defense Applied in jet engine components, space propulsion systems, and structural parts subjected to extreme pressure and heat. Key Features: • Manufactured to DIN 2632 specifications • PN 10 pressure rating for medium-pressure systems • Weld neck design for superior mechanical integrity • Available in Inconel 600, 625, and 718 for application-specific performance • Flat face option for improved gasket compression • Excellent resistance to oxidation, corrosion, and high-temperature stress • Suitable for critical applications in chemical, marine, aerospace, and energy sectors • Custom sizes, finishes, and alloys available upon request Conclusion: DIN 2632 Inconel Flanges PN 10 from Ladhani Metal Corporation deliver unmatched reliability and durability in medium-pressure environments where heat and corrosion are persistent challenges. With a selection of Inconel grades including 600, 625, and 718, these flanges are ideal for use in chemical processing, marine engineering, power generation, and aerospace industries. For customized solutions, technical guidance, or pricing, contact Ladhani Metal Corporation today.

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Monel Flanges

DIN 2628 Monel flanges PN 250 are high-performance weld neck flanges engineered in compliance with the DIN 2628 standard. Designed for high-pressure applications up to 250 bar (3625 psi), these flanges are constructed from Monel alloys, known for their exceptional resistance to corrosion, particularly in acidic and saline environments. Monel flanges deliver robust mechanical strength and thermal stability, making them suitable for challenging industrial applications that involve fluctuating temperatures, corrosive substances, and high mechanical stress. Ladhani Metal Corporation is a reliable global manufacturer and exporter of Monel flanges, providing products that meet exacting international standards for quality and performance. Our DIN 2628 PN 250 Monel weld neck flanges are extensively used in chemical processing, marine engineering, desalination systems, and offshore oil and gas installations. Known for superior build quality and long-term durability, these flanges ensure safe and efficient operations in pressure-sensitive systems exposed to harsh service conditions. Pressure Rating: • PN 250 (250 bar / 3625 psi): Suitable for systems requiring high-pressure endurance, secure sealing capabilities, and enhanced structural integrity. Flange Type: • Weld Neck Flanges Characterized by a long tapered hub that minimizes stress at the weld junction. Ideal for high-temperature and high-pressure applications. • Flat Face (FF) Flanges Provides an even surface for gasket compression, ensuring reliable sealing. Well-suited for connections involving cast components or brittle materials. Monel Grades and Composition: Monel 400 (UNS N04400) • Nickel (Ni): ≥ 63.0% • Copper (Cu): 28.0 – 34.0% • Iron (Fe): ≤ 2.5% • Manganese (Mn): ≤ 2.0% • Silicon (Si): ≤ 0.5% • Carbon (C): ≤ 0.3% Applications: Offers excellent resistance to seawater, hydrofluoric acid, and alkalis. Commonly used in marine piping, pump shafts, heat exchangers, and chemical processing equipment. Monel K500 (UNS N05500) • Nickel (Ni): ≥ 63.0% • Copper (Cu): 27.0 – 33.0% • Aluminum (Al): 2.3 – 3.15% • Titanium (Ti): 0.35 – 0.85% • Iron (Fe): ≤ 2.0% • Carbon (C): ≤ 0.25% Applications: Precipitation-hardened alloy providing greater strength and hardness than Monel 400. Suitable for valves, springs, and high-strength fasteners in corrosive environments including marine and chemical processing systems. Applications of DIN 2628 Monel Flanges PN 250: • Marine Engineering Highly resistant to saltwater corrosion, suitable for shipbuilding, subsea pipelines, and desalination plants. • Chemical and Petrochemical Processing Performs well in environments containing strong acids, alkalis, and chlorinated solvents. • Offshore Oil and Gas Used in systems that handle sour gas, brine, and other corrosive fluids. • Power and Energy Ideal for condenser systems and piping exposed to high-pressure steam and corrosive environments. • Pulp and Paper Industry Effective in processes involving sulfur compounds and acidic bleaching agents. Key Features: • Designed in accordance with DIN 2628 specifications • Rated for PN 250 (250 bar / 3625 psi) pressure systems • Weld neck configuration ensures superior mechanical strength and fatigue resistance • Flat face option supports uniform gasket pressure distribution • Available in Monel 400 and Monel K500 grades • Excellent corrosion resistance in marine, chemical, and high-saline environments • High mechanical strength and good thermal performance • Custom dimensions, pressure classes, and surface finishes available on request Conclusion: DIN 2628 Monel Flanges PN 250 from Ladhani Metal Corporation are engineered for high-pressure systems operating in some of the most demanding service environments. With excellent resistance to corrosion, superior mechanical properties, and thermal stability, Monel flanges provide reliable, long-term service in critical applications across marine, chemical, and offshore industries. Contact Ladhani Metal Corporation for detailed product specifications, technical support, or to request a customized quote.

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Inconel Flanges

DIN 2627 Inconel flanges PN 400 are premium-grade blind flanges engineered for ultra-high-pressure applications requiring exceptional corrosion resistance, heat resistance, and mechanical strength. Manufactured in accordance with the DIN 2627 standard, these flanges are designed to seal off the ends of piping systems, especially in extreme environments involving high temperatures, aggressive chemicals, or seawater exposure. The PN 400 rating (400 bar / 5800 psi) ensures performance under intense pressure conditions. Produced using high-performance nickel-based alloys such as Inconel 600, Inconel 625, and Inconel 718, these flanges are used extensively in aerospace, chemical processing, offshore oil and gas, marine, and power generation industries. Ladhani Metal Corporation is a leading global manufacturer and exporter of Inconel flanges, supplying components that conform to international standards for material integrity, pressure containment, and corrosion resistance. Pressure Rating: • PN 400 (400 bar / 5800 psi): Suitable for high-pressure piping systems in critical applications where maximum sealing and durability are essential. Flange Type: • Blind Flanges Solid, non-bored flanges used to isolate piping systems or terminate flow. Ideal for pressure testing, maintenance, and future pipeline expansions. • Flat Face (FF) Flanges Designed with a flat sealing surface for use with full-face gaskets and flat mating components, ensuring even load distribution and effective sealing. Inconel Grades and Composition: Inconel 600 (UNS N06600) • Nickel (Ni): ≥ 72% • Chromium (Cr): 14 – 17% • Iron (Fe): 6 – 10% • Manganese (Mn): ≤ 1% • Silicon (Si): ≤ 0.5% • Carbon (C): ≤ 0.15% • Sulfur (S): ≤ 0.015% Applications: Excellent resistance to oxidation, carburization, and chloride-ion stress corrosion cracking. Used in furnace components, heat exchangers, and food processing equipment. Inconel 625 (UNS N06625) • Nickel (Ni): ≥ 58% • Chromium (Cr): 20 – 23% • Molybdenum (Mo): 8 – 10% • Niobium + Tantalum (Nb + Ta): 3.15 – 4.15% • Iron (Fe): ≤ 5% • Carbon (C): ≤ 0.10% • Manganese (Mn): ≤ 0.5% • Silicon (Si): ≤ 0.5% Applications: Outstanding corrosion and fatigue resistance in seawater and chemical environments. Common in marine, aerospace, and offshore industries. Inconel 718 (UNS N07718) • Nickel (Ni): 50 – 55% • Chromium (Cr): 17 – 21% • Iron (Fe): Balance • Niobium + Tantalum (Nb + Ta): 4.75 – 5.5% • Molybdenum (Mo): 2.8 – 3.3% • Titanium (Ti): 0.65 – 1.15% • Aluminum (Al): 0.2 – 0.8% Applications: High strength and oxidation resistance up to 700°C. Used in jet engines, gas turbines, and high-pressure valves. Applications of DIN 2627 Inconel Flanges PN 400: • Offshore Oil and Gas Platforms Withstands high-pressure, high-salinity, and corrosive environments in subsea pipelines and risers. • Chemical Processing Plants Ideal for systems handling oxidizers, acids, solvents, and reactive compounds at high temperatures and pressures. • Aerospace and Jet Propulsion Used in fuel systems, hydraulic lines, and turbine enclosures where extreme heat and stress are common. • Nuclear and Power Generation Suited for high-pressure reactor lines and heat exchanger systems exposed to radiation, heat, and corrosive media. • Desalination and Seawater Systems Highly resistant to chloride-induced pitting and crevice corrosion. • High-Temperature and Reactive Media Systems Perfect for isolating systems exposed to thermal cycling and chemical attack. Key Features: • Manufactured to DIN 2627 standards • Rated for PN 400 ultra-high-pressure systems • Blind flange design for sealing pipe ends or testing access • Flat face design for even gasket compression and sealing • Available in Inconel 600, 625, and 718 • Excellent resistance to oxidation, acids, chlorides, and high heat • High mechanical strength and fatigue resistance • Used in critical industries including aerospace, marine, oil and gas, and chemical processing • Custom sizes, alloys, pressure ratings, and surface finishes available on request Conclusion: DIN 2627 Inconel Flanges PN 400 from Ladhani Metal Corporation offer exceptional performance and reliability in the most demanding service conditions. Whether your system involves corrosive chemicals, high-pressure steam, or marine exposure, these blind flanges deliver secure sealing, longevity, and safety. Contact Ladhani Metal Corporation for material selection, technical support, or custom solutions tailored to your high-performance application.

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Super Duplex Steel Flanges

DIN 2576 Super Duplex Flanges PN 10 are high-performance, slip-on flanges manufactured from super duplex stainless steel, designed for piping systems operating under low to medium pressures. Produced in accordance with the DIN 2576 standard, these flanges offer exceptional mechanical strength combined with superior corrosion resistance, making them ideal for highly aggressive and chloride-laden environments. The slip-on design facilitates easy placement over the pipe and enables secure welding, ensuring precise alignment and a reliable seal across various industrial applications. Ladhani Metal Corporation is a trusted manufacturer and global supplier of super duplex steel flanges, providing products that meet stringent international standards in terms of dimensions, metallurgy, and performance. DIN 2576 super duplex flanges are especially valued in industries where resistance to pitting, crevice corrosion, and stress corrosion cracking is critical, including marine, chemical, and wastewater systems. Pressure Rating: • PN 10 (10 bar / 145 psi): Designed for moderate-pressure systems demanding long-term durability in corrosive environments. Flange Types: • Slip-On Flanges These flanges slide over the pipe and are welded on both sides, offering ease of installation and secure mechanical performance. • Flat Face (FF) Flanges Designed for use with flat gaskets and mating surfaces, these flanges are ideal for applications involving non-metallic or cast components. Super Duplex Stainless Steel Grades and Composition: Super Duplex 2507 (UNS S32750) Composition: • Chromium (Cr): 24.0 – 26.0% • Nickel (Ni): 6.0 – 8.0% • Molybdenum (Mo): 3.0 – 5.0% • Nitrogen (N): 0.24 – 0.32% • Iron (Fe): Balance Applications: Super Duplex 2507 delivers superior yield strength and corrosion resistance, particularly in extreme environments. It is commonly used in subsea equipment, chemical containment, high-pressure systems, and offshore platforms exposed to seawater and chlorides. Applications of DIN 2576 Super Duplex Flanges: • Offshore and Marine Engineering Well-suited for seawater cooling systems, risers, and structural elements exposed to marine conditions. • Chemical and Petrochemical Industries Ideal for conveying highly corrosive fluids, acids, and chlorides in reactors and pipelines. • Water Treatment and Desalination Applied in reverse osmosis systems, brine piping, and high-salinity water circuits requiring enhanced corrosion resistance. • Pulp and Paper Industry Offers protection against aggressive bleaching agents and chemical fluids under pressurized conditions. • Oil and Gas Used in critical systems like separators, manifolds, and sour gas applications. • Structural and Pressure Vessel Fabrication Preferred for tanks and pressure vessels operating under corrosive and mechanical stress. Key Features: • Fully compliant with DIN 2576 standard specifications • PN 10 pressure rating for use in moderate-pressure applications • Superior resistance to chloride-induced pitting, crevice corrosion, and stress corrosion cracking • High mechanical strength reduces material thickness and overall system weight • Manufactured using Super Duplex 2507 and other super duplex alloys • Slip-on design ensures straightforward alignment and welding • Flat face variants suitable for a wide range of gaskets and connection types • Widely used across marine, chemical, oil and gas, and water treatment sectors • Custom sizes, face configurations, and finishes available on request Conclusion: DIN 2576 Super Duplex Flanges PN 10 by Ladhani Metal Corporation offer exceptional strength and corrosion resistance for highly demanding industrial environments. Available in Super Duplex 2507 and other super duplex grades, these flanges ensure reliable performance in systems facing high salinity, pressure, and temperature. For technical guidance, grade selection, or customized project solutions, reach out to Ladhani Metal Corporation today.

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Duplex Steel Flanges

DIN 2576 Duplex Flanges PN 10 are robust, slip-on flanges engineered from duplex stainless steel, designed for piping systems operating under low to medium pressures. Manufactured according to the DIN 2576 standard, these flanges combine high mechanical strength with excellent corrosion resistance, particularly in chloride-rich and aggressive chemical environments. The slip-on configuration allows for simple positioning over the pipe and secure welding, ensuring accurate alignment and strong sealing integrity in a variety of industrial applications. Ladhani Metal Corporation is a renowned manufacturer and global exporter of duplex steel flanges, offering products that conform to international specifications in terms of dimensions, metallurgy, and performance. DIN 2576 duplex flanges are especially valued in industries requiring resistance to pitting, crevice corrosion, and stress corrosion cracking, including offshore, chemical, and wastewater systems. Pressure Rating: • PN 10 (10 bar / 145 psi): Suitable for moderate-pressure systems requiring long-term performance in harsh environments. Flange Types: • Slip-On Flanges Designed to slide over the pipe and be welded on both sides, these flanges offer easy installation and secure mechanical integrity. • Flat Face (FF) Flanges Used in conjunction with flat gaskets and flat mating surfaces, ideal for connections involving non-metallic or cast components. Duplex Stainless Steel Grades and Composition: Duplex 2205 (UNS S32205 / S31803) Composition: • Chromium (Cr): 21.0 – 23.0% • Nickel (Ni): 4.5 – 6.5% • Molybdenum (Mo): 2.5 – 3.5% • Nitrogen (N): 0.14 – 0.20% • Iron (Fe): Balance Applications: Duplex 2205 offers twice the yield strength of conventional stainless steels with superior resistance to chloride-induced corrosion. Common applications include chemical processing, desalination, marine systems, and structural components in offshore platforms. Applications of DIN 2576 Duplex Flanges: • Offshore and Marine Engineering Ideal for seawater cooling systems, risers, and structural supports exposed to harsh marine environments. • Chemical and Petrochemical Industries Used in systems handling aggressive acids, chlorides, and solvents where standard stainless steels are insufficient. • Water Treatment and Desalination Applied in brine systems, high-salinity piping, and reverse osmosis plants for their resistance to pitting and scaling. • Pulp and Paper Industry Resists corrosion from bleaching chemicals and process fluids under high pressure. • Oil and Gas Suitable for pressure control systems, separators, and sour service applications. • Structural and Pressure Vessel Fabrication Used in tanks, pressure vessels, and piping subjected to mechanical and corrosive stress. Key Features: • Compliant with DIN 2576 standards • PN 10 pressure rating for moderate-pressure use • Excellent resistance to chloride stress corrosion, pitting, and crevice corrosion • High strength-to-weight ratio, reducing component size and cost • Available in Duplex 2205, Super Duplex 2507, and other custom grades • Slip-on design ensures quick and accurate pipe connections • Flat face options compatible with a variety of gaskets and materials • Ideal for chemical, marine, oil and gas, and water treatment sectors • Custom dimensions, face types, and surface finishes available Conclusion: DIN 2576 Duplex Flanges PN 10 from Ladhani Metal Corporation provide outstanding durability and corrosion resistance for challenging industrial environments. With availability in Duplex 2205 and Super Duplex 2507, these flanges are a reliable solution for systems exposed to high chlorides, pressure, and temperature. For technical specifications, grade selection, or project-specific orders, contact Ladhani Metal Corporation today.

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Monel Flanges

DIN 2576 Monel Flanges PN 10 are high-integrity, slip-on flanges manufactured from corrosion-resistant nickel-copper alloys, specifically designed for demanding low to medium-pressure applications. Compliant with the DIN 2576 standard, these flanges provide exceptional resistance to seawater, acids, alkalis, and corrosive chemicals, making them ideal for highly corrosive industrial environments. The slip-on design allows the flange to be positioned over the pipe and welded in place, ensuring precise alignment and long-term mechanical stability. Ladhani Metal Corporation is a trusted manufacturer and international supplier of Monel flanges, producing components that meet rigorous dimensional, metallurgical, and quality standards. DIN 2576 Monel flanges are widely used in marine, chemical, and oil and gas industries, where material durability and corrosion resistance are critical. Pressure Rating: • PN 10 (10 bar / 145 psi): Designed for systems requiring stable operation under moderate pressures in fluid and gas transport environments. Flange Types: • Slip-On Flanges Facilitate easy assembly by slipping over the pipe and welding on both sides to ensure a leak-proof and secure joint. • Flat Face (FF) Flanges Designed for use with flat gaskets and mating surfaces, offering even pressure distribution and sealing performance, particularly with brittle or non-metallic materials. Monel Grades and Composition: Monel 400 (UNS N04400) Composition: • Nickel (Ni): ≥ 63.0% • Copper (Cu): 28.0 – 34.0% • Iron (Fe), Manganese (Mn), Silicon (Si), Carbon (C): Trace amounts Applications: Monel 400 is well-known for its outstanding resistance to seawater, hydrofluoric acid, sulfuric acid, and alkalis. It is widely used in marine engineering, chemical processing, and heat exchangers. Monel K500 (UNS N05500) Composition: • Nickel (Ni): ≥ 63.0% • Copper (Cu): ~30.0% • Aluminum (Al): 2.3 – 3.15% • Titanium (Ti): 0.35 – 0.85% Applications: Monel K500 offers the same corrosion resistance as Monel 400 but with significantly higher strength and hardness due to age-hardening. It is ideal for high-stress applications such as pump shafts, valve components, and marine fasteners. Applications of DIN 2576 Monel Flanges: • Marine and Offshore Engineering Ideal for seawater exposure, ballast systems, and structural applications in shipbuilding and offshore platforms. • Chemical and Petrochemical Processing Used in piping systems exposed to strong acids, caustics, and other corrosive agents. • Oil and Gas Industry Suitable for sour gas (H₂S) environments, offshore drilling equipment, and refining systems. • Heat Exchangers and Condensers Monel's thermal conductivity and corrosion resistance make it suitable for tube sheets and connecting flanges. • Power Generation Applied in cooling systems, boiler feedwater lines, and other aggressive service environments. • Aerospace and Defense Used in fuel and hydraulic systems where resistance to corrosion and stress cracking is required. Key Features: • Manufactured according to DIN 2576 specification • PN 10 pressure rating for low to medium-pressure fluid systems • Exceptional resistance to seawater, acids, alkalis, and chlorides • Available in Monel 400 and Monel K500 grades • Slip-on design enables easy installation and welding • Flat face versions for compatibility with flat gaskets and brittle materials • Excellent mechanical properties and corrosion resistance • Custom dimensions, finishes, and face types available upon request Conclusion: DIN 2576 Monel Flanges PN 10 from Ladhani Metal Corporation deliver high corrosion resistance and mechanical strength for aggressive environments where conventional materials fail. With availability in Monel 400 and K500 grades, these flanges are suitable for marine, oil & gas, and chemical applications. For technical support, project consultation, or custom orders, contact Ladhani Metal Corporation today.

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Stainless Steel Flanges

DIN 2573 Stainless Steel Flanges PN 6 are precision-manufactured flat flanges made from high-grade stainless steel, designed for low-pressure applications across a broad range of industrial sectors. Compliant with DIN 2573 standards, these flanges provide excellent corrosion resistance, mechanical reliability, and compatibility with standard piping systems. They are commonly used in non-critical, low-pressure environments in industries such as water treatment, HVAC, food processing, and general utility piping systems. Ladhani Metal Corporation is a reputable manufacturer and exporter of stainless steel flanges, offering components that adhere to international quality benchmarks. The flat flange design simplifies assembly and disassembly, making these flanges a practical choice for systems requiring easy maintenance and reliable sealing at lower pressure ranges. Pressure Rating: • PN 6 (6 bar / 87 psi): Engineered for low-pressure systems where moderate sealing performance and corrosion resistance are essential. Flange Types: • Plate Flanges Used in low-pressure piping systems for simple bolted connections with gaskets. • Flat Face (FF) Flanges Ideal for use with cast iron equipment or non-metallic gaskets to ensure uniform surface contact. • Slip-On Flanges Designed for ease of installation by sliding over the pipe and welding both sides for moderate sealing. • Custom-Machined Flanges Available in specific dimensions and stainless steel grades as per customer specifications and operational requirements. Stainless Steel Grades and Composition: 1. 304 (Austenitic Stainless Steel) Composition: • Carbon (C): ≤ 0.08% • Manganese (Mn): ≤ 2.00% • Phosphorus (P): ≤ 0.045% • Sulfur (S): ≤ 0.030% • Silicon (Si): ≤ 1.00% • Chromium (Cr): 18.0 – 20.0% • Nickel (Ni): 8.0 – 11.0% Applications: Used in water supply lines, food-grade piping, and low-pressure process lines due to its hygienic properties and corrosion resistance. 2. 316 (Molybdenum-Alloyed Stainless Steel) Composition: • Carbon (C): ≤ 0.08% • Manganese (Mn): ≤ 2.00% • Phosphorus (P): ≤ 0.045% • Sulfur (S): ≤ 0.030% • Silicon (Si): ≤ 1.00% • Chromium (Cr): 16.0 – 18.0% • Nickel (Ni): 10.0 – 14.0% • Molybdenum (Mo): 2.0 – 3.0% Applications: Suited for mildly corrosive environments including water filtration systems and food-grade tanks. 3. 321 (Titanium-Stabilized Stainless Steel) Composition: • Carbon (C): ≤ 0.08% • Manganese (Mn): ≤ 2.00% • Phosphorus (P): ≤ 0.045% • Sulfur (S): ≤ 0.030% • Silicon (Si): ≤ 1.00% • Chromium (Cr): 17.0 – 19.0% • Nickel (Ni): 9.0 – 12.0% • Titanium (Ti): ≥ 5x(C+N) Applications: Applicable in moderately high temperatures or where intergranular corrosion resistance is important, such as thermal pipelines and heating systems. Applications of DIN 2573 Stainless Steel Flanges: • Water Distribution and Treatment Systems: Used in potable and waste water systems, ensuring non-reactive and rust-resistant performance. • HVAC and Building Installations: Employed in air ducts, chilled water lines, and other HVAC components where low-pressure performance is sufficient. • Food and Beverage Processing: Chosen for hygienic piping setups in non-pressurized fluid transfer applications. • Industrial Utility Lines: Integrated into auxiliary piping systems for lubricants, cooling water, and drainage. • Agricultural and Irrigation Systems: Used in low-pressure pumping and irrigation lines due to their corrosion resistance and ease of installation. Key Features: • Manufactured in compliance with DIN 2573 standard • PN 6 pressure rating suitable for non-critical systems • Excellent corrosion resistance with hygienic surface options • Flat and slip-on configurations for simplified assembly • Available in 304, 316, 321, and other stainless steel grades Conclusion: DIN 2573 Stainless Steel Flanges PN 6 by Ladhani Metal Corporation offer a cost-effective and reliable solution for low-pressure applications. Their corrosion-resistant material, ease of installation, and compliance with international standards make them ideal for various general-purpose industrial systems. For tailored configurations, specific material grades, or technical support, contact Ladhani Metal Corporation.

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Duplex Steel Flanges

DIN 2569 Duplex Steel Flanges PN 100 are precision-engineered welding neck flanges manufactured from high-performance duplex stainless steel, designed to ensure superior strength, corrosion resistance, and reliability in high-pressure and aggressive industrial environments. Built to DIN 2569 standards, these flanges offer excellent mechanical strength, stress corrosion cracking resistance, and thermal stability, making them ideal for use in industries such as oil and gas, offshore platforms, petrochemical, chemical processing, and marine engineering. Ladhani Metal Corporation is a reputable manufacturer and exporter of duplex steel flanges, providing products that conform to stringent global standards. The welding neck design allows for permanent and high-integrity pipe connections, making these flanges particularly suitable for applications subject to pressure fluctuations, corrosive media, and thermal cycling. Pressure Rating: • PN 100 (100 bar / 1450 psi): Specifically designed for high-pressure systems that demand robust sealing, mechanical resilience, and corrosion resistance in chemically aggressive environments. Flange Types: • Welding Neck Flanges Provide a tapered hub for stress distribution, ideal for high-pressure and corrosive piping systems. • Raised Face (RF) Flanges Facilitates effective gasket compression and sealing under elevated pressure and temperature. • Flat Face (FF) Flanges Used for connections with flat-faced components or non-metallic sealing materials. • Forged Welding Neck Flanges Offer enhanced strength, dimensional precision, and pressure resistance. • Custom-Machined Flanges Available in a wide range of sizes, pressure classes, and duplex steel grades to meet specific project requirements. Duplex Steel Grades and Composition: 1. ASTM A182 F51 (UNS S31803) Composition: • Chromium (Cr): 21.0–23.0% • Nickel (Ni): 4.5–6.5% • Molybdenum (Mo): 2.5–3.5% • Nitrogen (N): 0.10–0.22% • Manganese (Mn): ≤ 2.00% • Carbon (C): ≤ 0.030% • Phosphorus (P): ≤ 0.035% • Sulfur (S): ≤ 0.020% Applications: Widely used in chemical plants, desalination equipment, marine structures, and oil and gas platforms due to its excellent pitting and crevice corrosion resistance. 2. ASTM A182 F53 (UNS S32750) Composition: • Chromium (Cr): 24.0–26.0% • Nickel (Ni): 6.0–8.0% • Molybdenum (Mo): 3.0–5.0% • Nitrogen (N): 0.24–0.32% • Manganese (Mn): ≤ 1.20% • Carbon (C): ≤ 0.030% • Phosphorus (P): ≤ 0.035% • Sulfur (S): ≤ 0.020% Applications: Ideal for applications in offshore platforms, chemical tankers, and seawater systems, where high chloride resistance and strength are essential. 3. ASTM A182 F55 (UNS S32760) Composition: • Chromium (Cr): 24.0–26.0% • Nickel (Ni): 6.0–8.0% • Molybdenum (Mo): 3.0–4.0% • Copper (Cu): 0.5–1.0% • Tungsten (W): 0.5–1.0% • Nitrogen (N): 0.20–0.30% • Carbon (C): ≤ 0.030% • Manganese (Mn): ≤ 1.00% Applications: Used in demanding environments such as chemical processing, seawater handling systems, pulp and paper industries, and aggressive brine systems. Applications of DIN 2569 Duplex Steel Flanges: • Oil and Gas Pipelines: Used in high-pressure and corrosive media transport systems such as offshore and subsea pipelines. • Offshore and Marine Engineering: Installed in seawater cooling, ballast, and firefighting systems due to chloride resistance. • Petrochemical and Chemical Plants: Applied in aggressive media handling, reactors, and process lines. • Desalination and Water Treatment: Used in brine concentrators, high-pressure RO systems, and intake piping. • Pulp and Paper Industry: Employed in bleach plant and digester systems under high stress and chemical exposure. Key Features: • Manufactured to DIN 2569 standard • Available in PN 100 pressure rating • Excellent corrosion resistance and mechanical performance • High strength-to-weight ratio • Resistant to pitting, crevice corrosion, and stress corrosion cracking • Supplied with test certificates, quality assurance documents, and traceability • Optional surface finishes available, including pickling, passivation, and shot blasting Conclusion: DIN 2569 Duplex Steel Flanges PN 100 from Ladhani Metal Corporation are engineered to deliver superior strength, durability, and corrosion resistance in challenging industrial environments. Suitable for a wide range of applications across offshore, petrochemical, and marine sectors, these flanges are available in customizable sizes and duplex material grades. For detailed specifications, bulk inquiries, or technical support, contact Ladhani Metal Corporation today.

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titanium flanges

DIN 2569 Titanium Flanges PN 100 are precision-engineered welding neck flanges manufactured from premium-grade titanium, designed for exceptional performance in high-pressure and corrosive industrial applications. Built to DIN 2569 standards, these flanges offer outstanding corrosion resistance, high strength-to-weight ratio, and excellent thermal stability, making them suitable for critical systems across industries such as chemical processing, offshore engineering, aerospace, pharmaceuticals, marine, and power generation. Ladhani Metal Corporation is a trusted manufacturer and exporter of titanium flanges, delivering high-quality products that comply with rigorous international standards. The welding neck design ensures secure, leak-proof connections, ideal for high-stress environments and systems requiring permanent joints that withstand both pressure and temperature extremes. Pressure Rating: • PN 100 (100 bar / 1450 psi): Specifically designed for high-pressure systems requiring superior corrosion resistance, structural reliability, and long-term sealing performance in aggressive environments. Flange Types: • Welding Neck Flanges Ensure high-strength, welded connections ideal for systems with continuous pressure and thermal cycling. • Raised Face (RF) Flanges Enhances sealing capability in elevated pressure and temperature conditions. • Flat Face (FF) Flanges Used in systems with flat mating surfaces, particularly where non-metallic or brittle materials are involved. • Forged Welding Neck Flanges Provide enhanced strength, impact resistance, and dimensional precision. • Custom-Machined Flanges Available in a range of sizes, pressure classes, and titanium grades tailored to customer requirements. Titanium Grades and Composition: 1. Grade 2 (Commercially Pure Titanium) Composition: • Titanium (Ti): ≥ 98.9% • Iron (Fe): ≤ 0.30% • Oxygen (O): ≤ 0.25% • Carbon (C): ≤ 0.08% • Nitrogen (N): ≤ 0.03% • Hydrogen (H): ≤ 0.015% Applications: Widely used in chemical processing, desalination plants, and marine environments due to its excellent corrosion resistance and formability. 2. Grade 5 (Ti-6Al-4V, Titanium Alloy) Composition: • Titanium (Ti): Balance • Aluminum (Al): 5.5 – 6.75% • Vanadium (V): 3.5 – 4.5% Applications: Ideal for aerospace, offshore, and high-performance applications due to its high strength, low density, and corrosion resistance. Applications of DIN 2569 Titanium Flanges: • Chemical and Petrochemical Plants: Used in highly corrosive processes involving acids, chlorides, and oxidizing agents. • Marine and Offshore Engineering: Ideal for submerged and saltwater applications due to excellent resistance to seawater corrosion. • Aerospace and Defense: Employed in lightweight, high-strength components that require resistance to fatigue and corrosion. • Pharmaceutical and Medical Equipment: Used in ultra-clean and biocompatible systems where corrosion and contamination must be minimized. • Power Generation and Desalination: Applied in condenser systems, heat exchangers, and evaporators handling brine and other corrosive fluids. Key Features: • Manufactured to DIN 2569 standard • Available in PN 100 pressure rating • Exceptional corrosion resistance, including seawater and chemical environments • Lightweight, high-strength construction for improved efficiency and durability • Strong welded neck design for secure, permanent pipe connections • Supplied with test certificates, quality documents, and full traceability • Compatible with custom surface treatments including pickling, polishing, and passivation Conclusion: DIN 2569 Titanium Flanges PN 100 from Ladhani Metal Corporation are engineered for the highest levels of corrosion resistance, strength, and performance under pressure. Designed for extreme environments and demanding applications, these titanium flanges offer reliable, long-lasting service and are available in customized sizes and titanium grades. For project-specific requirements, technical support, or detailed specifications, contact Ladhani Metal Corporation today.

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Carbon Steel Flanges

DIN 2568 Carbon Steel Flanges PN 64 are robust threaded flanges manufactured from high-strength carbon steel, specifically designed to deliver reliable performance in high-pressure industrial systems. Produced in accordance with DIN 2568 specifications, these flanges offer excellent mechanical strength, thermal conductivity, and impact resistance, making them well-suited for demanding applications in oil and gas, petrochemicals, water treatment, mechanical construction, and power generation. Ladhani Metal Corporation is a trusted manufacturer and exporter of carbon steel flanges, offering products that comply with international quality standards and dimensional tolerances. The threaded design enables quick, weld-free installation and removal, making these flanges ideal for systems requiring ease of maintenance and rapid assembly. Pressure Rating: • PN 64 (64 bar / 928 psi): Engineered to withstand high-pressure environments and thermal variations in critical industrial applications. Flange Types: • Threaded (Screwed) Flanges Enable efficient installation without welding, ideal for systems requiring regular inspection or maintenance. • Raised Face (RF) Flanges Improve gasket sealing by concentrating pressure at the gasket area, ideal for high-pressure applications. • Flat Face (FF) Flanges Used in systems involving flat mating surfaces, particularly with brittle or non-metallic equipment. • Forged Threaded Flanges Provide excellent mechanical properties, dimensional accuracy, and durability under load. • Custom-Machined Flanges Available in various sizes, sealing surfaces, and material grades as per customer requirements. Available Carbon Steel Grades and Composition: 1. ASTM A105 (Forged Carbon Steel) Composition: • Carbon (C): ≤ 0.35% • Manganese (Mn): 0.60 – 1.05% • Phosphorus (P): ≤ 0.035% • Sulfur (S): ≤ 0.040% • Silicon (Si): 0.10 – 0.35% Applications: Widely used in valve, pipe, and fitting assemblies in oil and gas, power, and chemical systems due to its strength, toughness, and weldability. 2. ASTM A350 LF2 (Low-Temperature Carbon Steel) Composition: • Carbon (C): ≤ 0.30% • Manganese (Mn): 0.60 – 1.35% • Phosphorus (P): ≤ 0.035% • Sulfur (S): ≤ 0.040% • Silicon (Si): 0.15 – 0.30% Applications: Ideal for cryogenic and low-temperature pressure systems such as pipelines, storage tanks, and vessel components operating in sub-zero climates. Applications of DIN 2568 Carbon Steel Flanges: • Oil and Gas Industry Utilized in upstream and downstream operations, including high-pressure pipelines, wellheads, and separators. • Power Plants Used in steam, cooling water, and high-pressure boiler systems. • Water and Wastewater Management Suitable for potable water lines, sewage treatment facilities, and utility piping systems. • Petrochemical and Refining Applied in process piping that handles non-aggressive or mildly corrosive fluids. • Mechanical and Structural Installations Common in HVAC systems, pressure vessels, and general mechanical piping networks. Key Features: • Manufactured as per DIN 2568 standard • Rated for PN 64 high-pressure applications • Excellent strength, impact resistance, and thermal conductivity • Threaded connection ensures quick and easy, weld-free assembly • Cost-effective and durable solution for industrial infrastructure • Supplied with test certificates, inspection reports, and full traceability • Compatible with galvanizing, coating, or welding processes as required Conclusion: DIN 2568 Carbon Steel Flanges PN 64 from Ladhani Metal Corporation are engineered for high performance in critical industrial environments. Offering high pressure resistance, mechanical durability, and easy installation, these flanges are an optimal solution for a wide range of piping systems. For custom sizes, material options, or technical consultation, contact Ladhani Metal Corporation today.

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Monel Flanges

DIN 2568 Monel Flanges PN 64 are high-integrity threaded flanges manufactured from corrosion-resistant Monel alloys, designed to perform reliably under high pressure and in highly corrosive environments. Built in accordance with DIN 2568 standards, these flanges offer outstanding resistance to seawater, acids, and alkalis, while maintaining high mechanical strength and thermal stability. They are ideally suited for use in marine, chemical, oil and gas, and offshore applications where both durability and corrosion performance are critical. Ladhani Metal Corporation is a recognized manufacturer and exporter of Monel flanges, offering components that conform to global industry specifications. The threaded design facilitates easy, weld-free installation and disassembly, making them ideal for systems requiring frequent maintenance or rapid assembly in corrosive environments. Pressure Rating: • PN 64 (64 bar / 928 psi): Specially engineered for high-pressure systems exposed to aggressive chemical environments, ensuring mechanical integrity and long service life. Flange Types: • Threaded (Screwed) Flanges Enable efficient, non-welded installation and maintenance in high-corrosion environments. • Raised Face (RF) Flanges Improve gasket sealing performance in systems with pressure and temperature variations. • Flat Face (FF) Flanges Suited for connections with flat-faced components, ensuring uniform gasket load distribution. • Forged Threaded Flanges Provide enhanced strength, dimensional precision, and resistance to corrosion. • Custom-Machined Flanges Available in a variety of sizes, pressure ratings, and Monel grades to suit specific application needs. Available Monel Grades and Composition: 1. Monel 400 (UNS N04400) Composition: • Nickel (Ni): ≥ 63.0% • Copper (Cu): 28.0 – 34.0% • Iron (Fe): 2.0 – 2.5% • Manganese (Mn): ≤ 2.0% Applications: Commonly used in marine engineering, chemical processing, and hydrocarbon systems for its excellent resistance to saltwater, hydrofluoric acid, and stress corrosion cracking. 2. Monel K500 (UNS N05500) Composition: • Nickel (Ni): ≥ 63.0% • Copper (Cu): 27.0 – 33.0% • Aluminum (Al): 2.3 – 3.15% • Titanium (Ti): 0.35 – 0.85% Applications: Ideal for high-strength applications such as pump shafts, marine fasteners, and heat exchangers, combining the corrosion resistance of Monel 400 with increased hardness and tensile strength. Applications of DIN 2568 Monel Flanges: • Marine and Offshore Systems Used in seawater piping, ballast systems, and marine heat exchangers. • Chemical and Petrochemical Plants Resistant to acidic and alkaline media in processing plants and reactors. • Oil and Gas Industry Applied in sour gas service, separators, and wellhead systems. • Power Generation Installed in condensers, boilers, and cooling systems exposed to aggressive fluids. • Aerospace and Heat Treatment Suitable for exhaust systems, fixtures, and salt bath environments. Key Features: • Conforms to DIN 2568 standard • Rated for PN 64 high-pressure service • Exceptional resistance to seawater, acids, and alkalis • High strength, ductility, and fatigue resistance • Threaded design allows for fast, weld-free installation and disassembly • Supplied with test certificates, material traceability, and quality documentation • Available with custom machining, finishing, and dimensional options Conclusion: DIN 2568 Monel Flanges PN 64 from Ladhani Metal Corporation offer an optimal solution for high-pressure systems operating in chemically aggressive or marine environments. With superior mechanical performance and corrosion resistance, Monel 400 and K500 flanges provide long-lasting service life in demanding applications. For technical support, grade selection, or custom orders, contact Ladhani Metal Corporation today

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Super Duplex Flanges

DIN 2568 Super Duplex Steel Flanges PN 64 are premium-grade threaded flanges manufactured from high-performance super duplex stainless steel, designed to withstand extreme mechanical loads and highly corrosive environments. In compliance with DIN 2568 standards, these flanges offer exceptional strength, superior resistance to pitting and crevice corrosion, and excellent performance under high pressure and temperature variations, making them ideal for demanding applications in offshore, petrochemical, marine, and desalination industries. Ladhani Metal Corporation is a renowned manufacturer and exporter of super duplex flanges, supplying components that meet stringent global standards for quality, precision, and reliability. The threaded design ensures weld-free, easy installation and removal, making these flanges highly suitable for systems requiring quick assembly and periodic maintenance. Pressure Rating: • PN 64 (64 bar / 928 psi): Engineered for high-pressure and aggressive service conditions where material integrity and corrosion resistance are critical. Flange Types: • Threaded (Screwed) Flanges Facilitates rapid, weld-free assembly and disassembly, particularly in maintenance-intensive systems. • Raised Face (RF) Flanges Improves sealing effectiveness in high-pressure applications by concentrating gasket compression. • Flat Face (FF) Flanges Ideal for systems with flat mating surfaces, especially where non-metallic or brittle materials are used. • Forged Threaded Flanges Manufactured for enhanced strength, dimensional accuracy, and resilience in corrosive environments. • Custom-Machined Flanges Available in various sizes, sealing types, and super duplex grades, tailored to meet specific project requirements. Available Super Duplex Grades and Composition: 1. Super Duplex Steel Composition: • Chromium (Cr): 24.0 – 26.0% • Nickel (Ni): 6.0 – 8.0% • Molybdenum (Mo): 3.0 – 4.0% • Tungsten (W): 0.5 – 1.0% • Nitrogen (N): 0.20 – 0.30% • Carbon (C): ≤ 0.030% Applications: Used in highly corrosive environments such as seawater systems, desalination plants, and chemical reactors where maximum corrosion protection and mechanical strength are required. Applications of DIN 2568 Super Duplex Flanges: • Offshore and Subsea Engineering: Designed for long-term performance in saltwater, high-pressure, and submerged environments. • Oil and Gas Sector: Used in sour service, high-pressure pipelines, separators, and riser systems. • Chemical and Petrochemical Plants: Resistant to aggressive media such as chlorides, acids, and organic solvents. • Desalination and Water Treatment: Ideal for use in reverse osmosis systems, brine handling, and filtration modules. • Power Generation and Marine Infrastructure: Installed in heat exchangers, cooling systems, and seawater intake structures. Key Features: • Manufactured according to DIN 2568 specifications • Rated for PN 64 high-pressure service • Outstanding resistance to corrosion, pitting, and chloride-induced stress cracking • High yield strength and fatigue resistance • Threaded connection allows for easy, non-permanent assembly • Supplied with test certificates, MTCs, and full material traceability • Surface finish and machining available as per customer requirement Conclusion: DIN 2568 Super Duplex Flanges PN 64 from Ladhani Metal Corporation represent the ideal solution for high-pressure, highly corrosive, and mechanically challenging environments. With exceptional durability, corrosion protection, and installation efficiency, these flanges are engineered for performance and reliability. For custom dimensions, technical support, or grade selection, contact Ladhani Metal Corporation today

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Inconel Flanges

DIN 2567 Inconel flanges PN 25 and PN 40 are high-performance threaded flanges manufactured from nickel-chromium-based superalloys designed to perform under extreme temperatures, high pressures, and aggressive chemical environments. Built to DIN 2567 standards, these flanges offer superior resistance to oxidation, corrosion, and thermal fatigue, making them ideal for applications in aerospace, power generation, chemical processing, and marine environments. Ladhani Metal Corporation is a trusted manufacturer and exporter of Inconel flanges, delivering precision-engineered components with exceptional strength and metallurgical stability. The threaded design ensures easy, weld-free installation, making these flanges suitable for maintenance-driven or high-integrity systems. Pressure Ratings: • PN 25 (25 bar / 362 psi): Suitable for high-performance systems requiring chemical resistance and thermal stability. • PN 40 (40 bar / 580 psi): Engineered for high-pressure systems exposed to extreme conditions, offering outstanding mechanical integrity. Flange Types: • Threaded (Screwed) Flanges Allows easy installation and removal, especially in systems requiring regular maintenance. • Raised Face (RF) Flanges Enhances sealing performance under elevated pressure and temperature conditions. • Flat Face (FF) Flanges Used in systems with flat mating surfaces, especially when brittle or non-metallic components are involved. • Forged Threaded Flanges Provide superior strength, resistance to impact, and tight dimensional tolerances. • Custom-Machined Flanges Available in various sizes, pressure classes, and Inconel grades as per customer specifications. Available Inconel Grades and Composition: 1. Inconel 600 (UNS N06600) o Composition:  Nickel (Ni): ≥ 72.0%  Chromium (Cr): 14.0 – 17.0%  Iron (Fe): 6.0 – 10.0%  Carbon (C): ≤ 0.15%  Manganese (Mn): ≤ 1.0%  Silicon (Si): ≤ 0.5% o Applications: Heat exchangers, furnace components, and systems exposed to high temperatures and oxidizing conditions. 2. Inconel 625 (UNS N06625) o Composition:  Nickel (Ni): 58.0 min  Chromium (Cr): 20.0 – 23.0%  Molybdenum (Mo): 8.0 – 10.0%  Niobium (Nb + Ta): 3.15 – 4.15%  Iron (Fe): ≤ 5.0%  Carbon (C): ≤ 0.10%  Manganese (Mn): ≤ 0.50%  Silicon (Si): ≤ 0.50% o Applications: Seawater systems, marine exhausts, chemical processing, and nuclear environments with high chloride exposure. 3. Inconel 718 (UNS N07718) o Composition:  Nickel (Ni): 50.0 – 55.0%  Chromium (Cr): 17.0 – 21.0%  Iron (Fe): Balance  Niobium + Tantalum (Nb + Ta): 4.75 – 5.50%  Molybdenum (Mo): 2.80 – 3.30%  Titanium (Ti): 0.65 – 1.15%  Aluminum (Al): 0.20 – 0.80%  Cobalt (Co): ≤ 1.0% o Applications: Aerospace engines, high-temperature bolts, nuclear reactors, and gas turbines where exceptional fatigue strength, creep resistance, and stability under extreme heat are required. Applications of DIN 2567 Inconel Flanges: • Aerospace Industry: Jet engines, gas turbines, and components requiring strength and heat resistance. • Chemical and Petrochemical Plants: For systems involving aggressive acids, solvents, or high-chloride environments. • Power Generation: Used in high-pressure steam lines, heat exchangers, and nuclear reactors. • Marine and Offshore: Performs reliably in seawater, brine, and corrosion-prone offshore structures. • Oil & Gas Industry: Suitable for sour gas service, downhole tubing, and high-pressure production lines. Key Features: • Conforms to DIN 2567 standard • Available in PN 25 and PN 40 pressure ratings • Exceptional high-temperature strength and oxidation resistance • Superior resistance to pitting, crevice, and stress corrosion • High fatigue strength and excellent structural stability • Threaded design enables non-welded, easy assembly and maintenance • Supplied with test certificates, quality documentation, and full traceability Conclusion: DIN 2567 Inconel flanges PN 25 and PN 40 from Ladhani Metal Corporation are designed for the most extreme industrial conditions. Whether you're operating in aerospace, offshore, chemical, or power generation environments, these flanges provide unmatched performance, safety, and durability. For custom sizes, grade selection, or technical assistance, contact Ladhani Metal Corporation today.

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Titanium Flanges

DIN 2567 titanium flanges are precision-engineered threaded flanges designed for high-performance, medium-to-high-pressure piping systems. Manufactured according to the DIN 2567 standard, these flanges offer exceptional resistance to corrosion, extreme temperatures, and aggressive media. The threaded design allows for easy, weld-free installation, making them ideal for applications where frequent maintenance or system modifications are required. Ladhani Metal Corporation is a leading manufacturer and exporter of titanium flanges, supplying durable and high-quality components for industries that demand superior corrosion resistance and mechanical strength. DIN 2567 titanium flanges are widely used in marine, chemical, aerospace, and water treatment systems. Pressure Ratings: • PN 25 (25 bar / 362 psi): Suitable for moderate to high-pressure systems handling corrosive fluids or gases. Ideal for chemical, marine, and water treatment applications. • PN 40 (40 bar / 580 psi): Designed for high-pressure, high-performance environments requiring maximum reliability and resistance to mechanical stress. Commonly used in offshore, aerospace, and power generation systems. Flange Types: • Threaded (Screwed) Flanges Quick and convenient for non-welded, removable connections in high-purity or corrosive systems. • Raised Face (RF) Flanges Designed to enhance sealing efficiency by focusing compression on the gasket area. • Flat Face (FF) Flanges Ideal for use with non-metallic or brittle mating materials in low-to-medium pressure environments. • Forged Threaded Flanges Provide enhanced mechanical integrity, dimensional precision, and impact resistance. • Custom-Machined Flanges Available in customer-specified sizes, pressure ratings (PN 25, PN 40), and titanium grades. Titanium Grades and Composition: Grade 2 (Commercially Pure Titanium) Composition: Titanium (Ti): ≥ 98.9% Iron (Fe): ≤ 0.30% Oxygen (O): ≤ 0.25% Carbon (C): ≤ 0.08% Nitrogen (N): ≤ 0.03% Hydrogen (H): ≤ 0.015% Grade 5 (Titanium Alloy – Ti-6Al-4V) Composition: Titanium (Ti): Balance Aluminum (Al): 5.5 – 6.75% Vanadium (V): 3.5 – 4.5% Iron (Fe): ≤ 0.40% Oxygen (O): ≤ 0.20% Carbon (C): ≤ 0.08% Nitrogen (N): ≤ 0.05% Hydrogen (H): ≤ 0.015% Applications of DIN 2567 Titanium Flanges: • Chemical Processing: Resists corrosion from strong acids, solvents, and chlorides • Marine and Offshore Engineering: Performs reliably in saltwater environments and subsea installations • Aerospace and Defense: Used in lightweight, high-strength fuel and hydraulic systems • Power Generation: Handles steam and chemical media in nuclear and thermal power plants • Water & Wastewater Treatment: Ideal for high-purity systems, brine lines, and filtration units • Medical and Pharmaceutical: Suitable for bio-compatible and sterile fluid transport systems Key Features: • Manufactured to DIN 2567 standard • Available in PN 25 and PN 40 pressure ratings • Superior resistance to corrosion, erosion, and chemical attack • Lightweight structure with high tensile strength • Easy installation with threaded connections—no welding required • Suitable for both cryogenic and elevated temperature conditions Conclusion: DIN 2567 titanium flanges PN 25 and PN 40 from Ladhani Metal Corporation are the ideal choice for demanding, corrosion-sensitive environments. Combining strength, lightweight construction, and superior corrosion resistance, these flanges deliver long-lasting performance in critical applications across various industries. For detailed specifications, custom designs, or bulk orders, contact Ladhani Metal Corporation today.

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Stainless Steel Flanges

DIN 2567 stainless steel flanges are high-quality, corrosion-resistant flanges designed for medium to high-pressure piping systems. Manufactured according to the DIN 2567 standard, these flanges offer reliable, leak-free connections that are suitable for a wide range of industrial applications, particularly in environments requiring superior resistance to rust, corrosion, and extreme temperatures. Their durability and ease of installation make them ideal for systems needing frequent maintenance or modification. Ladhani Metal Corporation is a prominent manufacturer and exporter of stainless steel flanges, offering precisely engineered products with excellent mechanical properties, corrosion resistance, and high-temperature performance. DIN 2567 stainless steel flanges are widely utilized across various industries such as chemical processing, oil & gas, power generation, and water treatment. Flange Types: • Threaded (Screwed) Flanges: These enable fast, non-welded assembly, ideal for systems requiring frequent disassembly and reassembly, such as in maintenance-driven or temporary installations. • Raised Face (RF) Flanges: Designed to enhance gasket sealing by concentrating pressure on a smaller contact area, improving the sealing ability in high-pressure systems. • Flat Face (FF) Flanges: Commonly used with cast iron or non-metallic equipment in lower-to-medium pressure systems, providing a flat sealing surface. • Forged Threaded Flanges: Offer improved strength, impact resistance, and dimensional accuracy, making them suitable for demanding applications. • Custom-Machined Flanges: Tailored to customer-specific requirements, including pressure class, size, and material variant. Available Stainless Steel Grades and Composition: 1. Grade 304 o Carbon (C): ≤ 0.08% o Manganese (Mn): 2.00 – 2.50% o Phosphorus (P): ≤ 0.045% o Sulfur (S): ≤ 0.030% o Silicon (Si): ≤ 1.00% o Chromium (Cr): 18.00 – 20.00% o Nickel (Ni): 8.00 – 10.50% Applications: Widely used in food processing, chemical industries, plumbing, and water treatment systems. The corrosion-resistant properties make it ideal for various industrial and marine environments. 2. Grade 316 o Carbon (C): ≤ 0.08% o Manganese (Mn): 2.00 – 2.50% o Phosphorus (P): ≤ 0.045% o Sulfur (S): ≤ 0.030% o Silicon (Si): ≤ 1.00% o Chromium (Cr): 16.00 – 18.00% o Nickel (Ni): 10.00 – 14.00% o Molybdenum (Mo): 2.00 – 3.00% Applications: Ideal for harsh, high-corrosion environments such as chemical and petrochemical industries, marine applications, and systems requiring resistance to pitting and crevice corrosion. 3. Grade 321 o Carbon (C): ≤ 0.08% o Manganese (Mn): 2.00 – 2.50% o Phosphorus (P): ≤ 0.045% o Sulfur (S): ≤ 0.030% o Silicon (Si): ≤ 1.00% o Chromium (Cr): 17.00 – 19.00% o Nickel (Ni): 9.00 – 12.00% o Titanium (Ti): 5 times the carbon content, minimum of 0.60% Applications: Suitable for high-temperature applications and environments where good oxidation and corrosion resistance are necessary. Often used in applications involving elevated temperatures, such as exhaust systems, heat exchangers, and boilers. Applications of DIN 2567 Stainless Steel Flanges: • Chemical Processing Industry: Used in pipelines, reactors, and pumps for handling corrosive substances. • Oil & Gas Industry: Common in offshore platforms, refineries, and subsea pipelines. • Power Plants: Ideal for steam, gas, and cooling water pipelines where high-temperature resistance is needed. • Water & Wastewater Treatment: Cost-effective and durable for fluid handling, filtration lines, and desalination plants. • Food & Beverage Industry: Hygiene and corrosion resistance make them suitable for food processing and pharmaceutical manufacturing systems. • Marine and Offshore: Excellent for use in saltwater environments and high-humidity areas. Key Features: • Manufactured to DIN 2567 standard with PN 25 and PN 40 pressure ratings • High resistance to corrosion, pitting, and oxidation, even in aggressive environments • Available in a range of stainless steel grades: 304, 316, 321 • Superior mechanical strength and excellent weldability • Easy installation with a threaded design for non-welded assembly Conclusion: DIN 2567 stainless steel flanges PN 25 and PN 40 from Ladhani Metal Corporation provide a reliable, high-performance solution for medium to high-pressure piping systems. With exceptional resistance to corrosion, high temperatures, and mechanical stress, these flanges are engineered to perform in demanding industrial environments. For custom specifications, large orders, or further inquiries, contact Ladhani Metal Corporation today.

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Monel Flanges

DIN 2566 Monel flanges PN 16 are high-performance, corrosion-resistant threaded flanges designed for medium-pressure piping systems exposed to aggressive environments such as seawater, acids, and alkalis. These flanges are manufactured in accordance with DIN 2566 standards and are ideal for non-welded connections requiring strength, durability, and resistance to harsh chemicals. Ladhani Metal Corporation is a trusted manufacturer and exporter of Monel flanges, delivering precisely machined components with excellent dimensional accuracy and long service life. These flanges are widely used in marine, chemical, and offshore applications where standard stainless steels or carbon steels may fail due to corrosion. Flange Types: • Threaded (Screwed) Flanges: Enable fast installation and removal without welding, ideal for maintenance-friendly and modular systems. • Raised Face (RF) Flanges: Enhance gasket compression for improved sealing under pressure. • Flat Face (FF) Flanges: Used with flat-faced equipment or non-metallic components in moderate-pressure systems. • Forged Threaded Flanges: Offer enhanced strength and impact resistance due to forging. • Custom-Machined Flanges: Available upon request, tailored to specific dimensional and material needs. Available Monel Grades and Composition: 1. Monel 400 (UNS N04400) • Nickel (Ni): ≥ 63% • Copper (Cu): 28.0 – 34.0% • Iron (Fe): ≤ 2.5% • Manganese (Mn): ≤ 2.0% • Excellent resistance to seawater, steam, salt, and corrosive acids such as hydrofluoric and sulfuric acid. Applications: Used in marine hardware, chemical processing, offshore structures, pump shafts, and heat exchangers. 2. Monel K500 (UNS N05500) • Nickel (Ni): 63.0% min (includes cobalt) • Copper (Cu): 27.0 – 33.0% • Aluminum (Al): 2.30 – 3.15% • Titanium (Ti): 0.35 – 0.85% • Iron (Fe): ≤ 2.0% • Manganese (Mn): ≤ 1.5% • Silicon (Si): ≤ 0.5% • Carbon (C): ≤ 0.25% • Sulfur (S): ≤ 0.01% Applications: Ideal for high-strength, corrosion-resistant components such as pump shafts, marine equipment, fasteners, and valve components in oil & gas, marine, and chemical industries. Applications of DIN 2566 Monel Flanges: • Marine and Shipbuilding: Resistant to saltwater and brine environments • Offshore Oil & Gas Platforms: Corrosion-resistant in harsh subsea conditions • Chemical and Petrochemical Processing: Withstands acids and alkalis, including HF • Pump and Valve Systems: Durable and reliable in corrosive fluid transfer • Heat Exchangers and Condensers: Non-reactive in high-temperature, high-corrosion zones Key Features: • Manufactured to DIN 2566 standard with PN 16 pressure rating • Excellent resistance to corrosion, erosion, and acidic environments • Suitable for chloride-rich and saltwater systems • Non-magnetic and stable in extreme temperature variations • Threaded design allows easy assembly without welding • Supplied with material test certificates, inspection documents, and traceability Conclusion: DIN 2566 Monel flanges PN 16 from Ladhani Metal Corporation offer outstanding performance in highly corrosive and marine environments. Built from premium Monel alloys like Monel 400 and K500, these flanges provide superior strength, thermal stability, and longevity for critical systems. For technical details, custom sizing, or volume orders, contact Ladhani Metal Corporation today.

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Super Duplex Flanges

DIN 2566 super duplex flanges PN 16 are engineered for superior mechanical strength and excellent corrosion resistance in medium-pressure threaded piping systems. These flanges are manufactured in accordance with DIN 2566 standards and are designed for use in harsh environments where conventional stainless steel flanges may not perform reliably. With a threaded, non-welded design, they are ideal for systems that require ease of installation and frequent maintenance access. Ladhani Metal Corporation is a reputed manufacturer and exporter of super duplex stainless steel flanges, offering high-performance products with excellent dimensional accuracy, strength, and resistance to pitting, crevice corrosion, and stress corrosion cracking. These flanges are well-suited for demanding industries such as oil and gas, desalination, chemical processing, and offshore engineering. Flange Types: • Threaded (Screwed) Flanges: Quick and easy to install without welding; ideal for systems that require regular disassembly or adjustments. • Raised Face (RF) Flanges: Enhances gasket compression by focusing pressure on a smaller surface area for improved sealing. • Flat Face (FF) Flanges: Used in systems with flat-sealing surfaces, especially in low-pressure or brittle material connections. • Forged Threaded Flanges: Manufactured through precision forging to achieve superior strength, tight tolerances, and impact resistance. • Custom-Machined Flanges: Available in custom sizes, pressure ratings, and face types as per project specifications. Available Super Duplex Grade and Composition: 1. Super Duplex 2507 (UNS S32750) • Chromium (Cr): 24.0 – 26.0% • Nickel (Ni): 6.0 – 8.0% • Molybdenum (Mo): 3.0 – 5.0% • Nitrogen (N): 0.24 – 0.32% • Carbon (C): ≤ 0.030% • Manganese (Mn): ≤ 1.2% • Silicon (Si): ≤ 0.80% Applications: Super Duplex 2507 is used in highly corrosive environments where strength and corrosion resistance are paramount. Typical applications include subsea and offshore structures, chemical process systems, high-salinity water handling, pressure vessels, and marine components. Applications of DIN 2566 Super Duplex Flanges: • Offshore Oil & Gas: Withstands harsh subsea conditions and sour service • Desalination and Water Treatment: Excellent in brine and chlorinated environments • Chemical and Petrochemical Industries: Handles aggressive process chemicals with ease • Marine and Shipbuilding: High durability in saltwater and humid environments • Structural and High-Pressure Piping: Suitable for critical load-bearing and high-stress systems Key Features: • Manufactured to DIN 2566 standard with PN 16 pressure rating • Exceptional corrosion resistance, especially against chlorides and sulfides • Very high tensile and yield strength • Threaded connection for fast and weld-free installation • Outstanding resistance to stress corrosion cracking and erosion • Supplied with material test certificates, third-party inspection (if required), and traceability documentation Conclusion: DIN 2566 super duplex flanges PN 16 from Ladhani Metal Corporation provide unmatched performance in extreme environments where both high strength and superior corrosion resistance are essential. Engineered for long service life with minimal maintenance, these flanges are the preferred solution for the most demanding industrial and marine applications. For inquiries, technical specifications, or project-based customization, contact Ladhani Metal Corporation today.

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Duplex Flanges

DIN 2566 duplex flanges PN 16 are high-performance, corrosion-resistant flanges designed for medium-pressure threaded piping systems. Manufactured in compliance with DIN 2566 standards, these flanges provide a reliable, non-welded connection ideal for environments where both strength and corrosion resistance are critical. Ladhani Metal Corporation is a manufacturer and exporter of duplex stainless steel flanges, offering precise machining, dimensional accuracy, and material traceability. With excellent mechanical properties and enhanced resistance to stress corrosion cracking and pitting, DIN 2566 duplex flanges are suitable for demanding applications across the oil & gas, petrochemical, marine, and power generation industries. Flange Types: • Threaded (Screwed) Flanges: Enable easy assembly and disassembly without welding, ideal for maintenance-intensive or temporary systems. • Raised Face (RF) Flanges: Improve gasket sealing by focusing pressure on a smaller surface area, reducing the risk of leakage. • Flat Face (FF) Flanges: Used with equipment having flat sealing surfaces, especially in systems using cast or non-metallic components. • Forged Threaded Flanges: Offer superior strength and impact resistance with consistent dimensional tolerance. • Custom-Machined Flanges: Tailored to meet specific application needs including pressure class, material grade, and sizing. Available Duplex Grades and Composition: 1. Duplex 2205 (UNS S31803 / S32205) • Chromium (Cr): 21.0 – 23.0% • Nickel (Ni): 4.5 – 6.5% • Molybdenum (Mo): 2.5 – 3.5% • Nitrogen (N): 0.14 – 0.20% • Carbon (C): ≤ 0.030% • Manganese (Mn): ≤ 2.0% • Silicon (Si): ≤ 1.0% Applications: Used in environments with chloride exposure and aggressive chemical media, such as offshore platforms, desalination plants, pressure vessels, and structural piping systems. Applications of DIN 2566 Duplex Flanges: • Oil & Gas Pipelines: Resistant to sour service and high-pressure fluids • Chemical and Petrochemical Plants: Withstands corrosive chemicals and process fluids • Marine and Offshore Engineering: Ideal for seawater and salt-laden atmospheres • Power Plants: Used in high-temperature and high-pressure piping systems • Water Treatment and Desalination: Corrosion-free in brine and chlorinated water systems Key Features: • Manufactured to DIN 2566 standard with PN 16 pressure rating • Excellent corrosion and stress corrosion cracking resistance • High strength and toughness, even at low temperatures • Maintenance-friendly threaded design • Dimensional precision and smooth finish for leak-free operation • Supplied with test certificates, inspection reports, and full traceability Conclusion: DIN 2566 duplex flanges PN 16 from Ladhani Metal Corporation are engineered to deliver a perfect balance of strength and corrosion resistance in medium-pressure piping applications. Designed for long-term durability in harsh environments, these flanges offer dependable performance with minimal maintenance. For technical assistance, custom dimensions, or bulk orders, get in touch with Ladhani Metal Corporation today.

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Inconel Flanges

Ladhani Metal Corporation is a leading manufacturer and exporter of DIN 2565 Inconel flanges, engineered for high-performance, corrosion-resistant, and heat-resistant piping connections in low-pressure systems. These flanges are manufactured in accordance with DIN 2565 standards and are typically available with a PN 6 pressure rating, making them ideal for threaded piping connections where welding is not required. Inconel flanges are made from a family of nickel-chromium-based superalloys known for their excellent resistance to oxidation, high temperatures, and corrosive environments. They are especially suitable for critical applications in extreme operating conditions, including chemical processing, marine, aerospace, and high-temperature industrial systems. Flange Types: • Threaded (Screwed) Flanges: Allow for quick and easy installation without welding, suitable for systems requiring periodic disassembly. • Raised Face (RF) Flanges: Provides enhanced gasket compression, ensuring a tight and reliable seal in corrosive and high-temperature applications. • Flat Face (FF) Flanges: Commonly used in low-pressure piping systems, especially when paired with non-metallic gaskets. • Forged Threaded Flanges: Forging enhances mechanical strength and resistance to fatigue and stress. • Custom-Machined Flanges: Precision-machined to meet specific dimensional, material, and pressure requirements for specialized uses. Available Inconel Grades and Chemical Composition: 1. Inconel 600 (UNS N06600) o Nickel (Ni): ≥ 72.0% o Chromium (Cr): 14.0 – 17.0% o Iron (Fe): 6.0 – 10.0% Applications: Resistant to high temperatures and oxidizing environments; ideal for furnace components, chemical processing, and heat exchangers. 2. Inconel 625 (UNS N06625) o Nickel (Ni): ≥ 58.0% o Chromium (Cr): 20.0 – 23.0% o Molybdenum (Mo): 8.0 – 10.0% o Niobium (Nb): 3.15 – 4.15% Applications: Offers outstanding fatigue strength and chloride corrosion resistance; used in marine systems, nuclear reactors, and aerospace components. Applications of DIN 2565 Inconel Flanges: • Chemical Processing: Excellent resistance to a wide range of corrosive chemicals and high-temperature oxidation. • Marine and Offshore: Withstands saltwater corrosion and extreme marine conditions. • Power and Heat Generation: Suitable for high-temperature boiler systems and superheaters. • Aerospace Industry: Ideal for jet engines, turbine components, and exhaust systems. • Nuclear and Defense: Used in systems exposed to radiation, high pressure, and corrosive environments. Key Features: • Manufactured in compliance with DIN 2565 specifications and PN 6 pressure rating • Excellent resistance to oxidation, carburization, and chloride stress corrosion • High mechanical strength at elevated temperatures • Non-magnetic and corrosion-resistant in both oxidizing and reducing environments • Supplied with complete material traceability, test certificates, and quality assurance documents Conclusion: DIN 2565 Inconel flanges from Ladhani Metal Corporation are engineered to meet the highest standards of performance, durability, and corrosion resistance. Ideal for demanding industries where reliability under extreme conditions is essential, these flanges deliver long-term performance and safety. Backed by stringent quality control and precision manufacturing, our Inconel flanges are a trusted choice for critical applications worldwide. For technical details, pricing information, or to place a bulk order, contact Ladhani Metal Corporation today.

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Monel Flanges

Ladhani Metal Corporation is a reputed manufacturer and exporter of DIN 2561 Monel flanges, engineered for durability and corrosion resistance in low-pressure piping systems. Manufactured in accordance with the DIN 2561 standard, these flanges are available in pressure ratings including PN6, PN10, PN16, PN25, and PN40, offering excellent adaptability for custom project requirements. Monel, a high-performance nickel-copper alloy, is known for its exceptional resistance to seawater, acidic environments, and high-temperature oxidation. These properties make Monel flanges a preferred choice for marine, chemical, and oil & gas applications. Flange Types: Weld neck flanges: Designed for high-strength applications and superior leak-proof integrity. Raised face (RF): Enhances gasket compression and improves sealing performance. Flat face (FF): Ideal for connections involving brittle or non-metallic mating surfaces. Grades, Chemical Composition, and Applications: Monel 400 (UNS N04400) Chemical Composition: Nickel (Ni): ≥ 63.0% Copper (Cu): 28.0 – 34.0% Iron (Fe): ≤ 2.5% Manganese (Mn): ≤ 2.0% Silicon (Si): ≤ 0.5% Carbon (C): ≤ 0.30% Applications: Used in marine engineering, chemical processing, hydrocarbon processing, and heat exchangers. Outstanding resistance to seawater, acidic solutions (such as hydrofluoric and sulfuric acids), and high-pressure steam. Monel K500 (UNS N05500) Chemical Composition: Nickel (Ni): ≥ 63.0% Copper (Cu): 27.0 – 33.0% Aluminum (Al): 2.3 – 3.15% Titanium (Ti): 0.35 – 0.85% Iron (Fe): ≤ 2.0% Carbon (C): ≤ 0.25% Applications: Commonly used in oil and gas drilling tools, marine shafts, fasteners, and pumps. Offers higher strength and hardness than Monel 400 while retaining excellent corrosion resistance. Key Features: Complies with DIN 2561 standard specifications. Excellent resistance to corrosion in seawater and acidic environments. High mechanical strength and dimensional stability. Available in custom sizes, face finishes, and drilling options. Supplied with complete material test certificates and quality documentation. Applications: Marine & Shipbuilding: Exceptional resistance to saltwater corrosion makes Monel flanges suitable for seawater piping, condensers, and pump components. Oil & Gas Industry: Ideal for offshore rigs, valves, drilling equipment, and sour gas environments due to their resistance to corrosion and high pressure. Chemical Processing: Used in equipment handling hydrofluoric acid, alkalis, and other corrosive media in chemical plants. Conclusion: DIN 2561 Monel flanges from Ladhani Metal Corporation are engineered to deliver superior corrosion resistance and mechanical strength in aggressive environments. With Monel grades such as 400 and K500, these flanges are trusted by global industries for critical applications where reliability and performance are paramount. Our strict quality control and precision manufacturing ensure flanges that meet the highest standards of durability and safety. For technical details, pricing, or bulk inquiries, contact Ladhani Metal Corporation.

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Super Duplex Flange

The DIN 2558 Super Duplex Flange PN 6 is a high-performance piping component engineered for the most demanding industrial applications. Designed in accordance with DIN (Deutsches Institut für Normung) specifications, these flanges are manufactured from premium-grade super duplex stainless steel, offering outstanding mechanical strength and superior corrosion resistance, particularly in aggressive environments. Supplied by Ladhani Metal Corporation, these flanges are trusted by industries that require durability, safety, and long-lasting performance. Super duplex flanges are widely used in offshore oil and gas, petrochemical, chemical processing, desalination, and marine applications where resistance to stress corrosion cracking, pitting, and erosion is essential. The PN 6 pressure rating (6 bar or approximately 87 psi) makes them suitable for medium-pressure systems requiring robust and corrosion-resistant connections. Types: Weld Neck Flange – Offers a strong welded connection ideal for high-pressure and high-temperature systems. Slip-On Flange – Easy to install and weld, suitable for lower-stress applications. Blind Flange – Used to seal off the end of a pipeline, ensuring zero leakage. Threaded Flange – Provides a screw-type connection where welding isn’t preferred. Socket Weld Flange – Ideal for small-diameter, high-pressure applications requiring a smooth bore and secure weld. Grade & Chemical Composition: Super Duplex 2507 (UNS S32750): Chromium (Cr): 24.0 – 26.0% Nickel (Ni): 6.0 – 8.0% Molybdenum (Mo): 3.0 – 5.0% Nitrogen (N): 0.24 – 0.32% Manganese (Mn): ≤ 1.2% Silicon (Si): ≤ 0.8% Carbon (C): ≤ 0.03% Iron (Fe): Balance Key Properties: Exceptional resistance to chloride-induced stress corrosion cracking, pitting, and crevice corrosion High tensile and yield strength—almost double that of conventional austenitic stainless steels Outstanding performance in seawater and chemically aggressive environments PN 6 Rating: The PN 6 pressure rating corresponds to 6 bar (approximately 87 psi), making this flange ideal for medium-pressure pipelines where superior strength and corrosion resistance are required for safe and long-lasting operation. Features: Corrosion Resistance: Excellent resistance to both uniform and localized corrosion, even in chloride-rich environments such as seawater. High Mechanical Strength: Delivers outstanding load-bearing capacity, enabling the use of thinner wall sections for lighter system design. Long Service Life: Built for durability in extreme conditions, reducing maintenance and replacement costs over time. Stress Corrosion Resistance: Provides safety in high-stress, high-temperature, and aggressive chemical conditions. Industry Versatility: Widely used in offshore platforms, chemical plants, desalination units, marine vessels, and high-performance piping systems. Cost Efficiency: High strength and corrosion resistance allow for optimized system design with reduced material usage. Ladhani Metal Corporation ensures that each DIN 2558 Super Duplex Flange is manufactured using advanced technology and strict quality control processes. These flanges deliver the strength, reliability, and corrosion resistance required in the most challenging industrial applications—offering a dependable, long-term solution for critical infrastructure. #din2558 #din2558flanges #din2558superduplexflanges #flanges

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Titanium Flanges

The DIN 2558 Titanium Flange PN 6 is a precision-engineered component designed to meet the demanding requirements of modern industrial piping systems. Manufactured in compliance with DIN (Deutsches Institut für Normung) standards, these flanges are crafted from high-grade titanium alloys that offer exceptional resistance to corrosion, extreme temperatures, and chemically aggressive environments. Ladhani Metal Corporation is a reliable supplier of these titanium flanges, delivering products that are valued for their durability, lightweight properties, and long-term performance in critical applications. Types: Weld Neck Flange – Provides a strong, leak-proof joint suitable for high-temperature and high-pressure environments. Slip-On Flange – Easy to install, this flange type is welded on both sides and offers a cost-effective solution. Blind Flange – Used to block off the end of a piping system or pressure vessel, ensuring no flow passes through. Threaded Flange – Ideal for systems where welding is not suitable, this flange screws directly onto the pipe. Socket Weld Flange – Designed for small-diameter piping systems, offering a smooth bore and strong welded joint. Titanium Grades & Chemical Composition: Grade 2 Titanium (Commercially Pure): Titanium (Ti): ≥ 98.9% Iron (Fe): ≤ 0.30% Oxygen (O): ≤ 0.25% Carbon (C): ≤ 0.08% Nitrogen (N): ≤ 0.03% Hydrogen (H): ≤ 0.015% Features: Excellent corrosion resistance, good formability, and weldability. Commonly used in marine and chemical environments. Grade 5 Titanium (Ti-6Al-4V): Titanium (Ti): Balance Aluminum (Al): 5.5 – 6.75% Vanadium (V): 3.5 – 4.5% Iron (Fe): ≤ 0.40% Oxygen (O): ≤ 0.20% Carbon (C): ≤ 0.08% Nitrogen (N): ≤ 0.05% Hydrogen (H): ≤ 0.015% Features: High strength, excellent corrosion resistance, and good fatigue resistance. Commonly used in aerospace, marine, and industrial applications. PN 6 Rating: The PN 6 designation refers to a nominal pressure rating of 6 bar (87 psi), making these flanges suitable for medium-pressure applications in both industrial and marine settings. It ensures safe and reliable connections where corrosion and mechanical integrity are of critical importance. Features: Corrosion Resistance: Titanium provides outstanding resistance to saltwater, chlorides, and many acidic environments. High Strength-to-Weight Ratio: Offers strong performance while being significantly lighter than steel-based alternatives. Temperature Resistance: Suitable for use in high-temperature and cryogenic environments. Versatile Applications: Ideal for use in chemical processing, offshore systems, desalination plants, medical and aerospace applications. Easy Fabrication: Good weldability and formability allow for efficient installation and system integration. Longevity: Titanium flanges from Ladhani Metal Corporation are engineered for long service life, reducing maintenance costs and operational downtime. Ladhani Metal Corporation ensures each DIN 2558 titanium flange is manufactured with precision and tested thoroughly to meet the highest international quality standards, delivering performance and value across a wide range of industrial systems. #din2558 #din2558flanges #din2558titaniumflanges #titaniumflanges #flanges

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1.4002 Seamless Elbow , Stainless Steel Seamless Elbow in 1.4006 , Stainless Steel 1.4006 Seamless Elbow , SS 1.4006 Seamless Elbow , Stainless Steel Welded Elbow in 1.4002 , Stainless Steel 1.4002 Welded Elbow , SS 1.4002 Welded Elbow , Stainless Steel Welded Elbow in 1.4006 , Stainless Steel 1.4006 Welded Elbow , SS 1.4006 Welded Elbow , Stainless Steel Forged Coupling in 1.4002 , Stainless Steel 1.4002 Forged Coupling , SS 1.4002 Forged Coupling , Stainless Steel Forged Coupling in 1.4006 , Stainless Steel 1.4006 Forged Coupling , SS 1.4006 Forged Coupling , Stainless Steel Seamless Coupling in 1.4002 , Stainless Steel 1.4002 Seamless Coupling , SS 1.4002 Seamless Coupling , Stainless Steel Seamless Coupling in 1.4006 , Stainless Steel 1.4006 Seamless Coupling , SS 1.4006 Seamless Coupling , Stainless Steel Welded Coupling in 1.4002 , Stainless Steel 1.4002 Welded Coupling , SS 1.4002 Welded Coupling , Stainless Steel Welded Coupling in 1.4006 , Stainless Steel 1.4006 Welded Coupling , SS 1.4006 Welded Coupling , Stainless Steel Forged Reducers in 1.4002 , Stainless Steel 1.4002 Forged Reducers , SS 1.4002 Forged Reducers , Stainless Steel Forged Reducers in 1.4006 , Stainless Steel 1.4006 Forged Reducers , SS 1.4006 Forged Reducers , Stainless Steel Seamless Reducers in 1.4002 , Stainless Steel 1.4002 Seamless Reducers , SS 1.4002 Seamless Reducers , Stainless Steel Seamless Reducers in 1.4006 , Stainless Steel 1.4006 Seamless Reducers , SS 1.4006 Seamless Reducers , Stainless Steel Welded Reducers in 1.4002 , Stainless Steel 1.4002 Welded Reducers , SS 1.4002 Welded Reducers , Stainless Steel Welded Reducers in 1.4006 , Stainless Steel 1.4006 Welded Reducers , SS 1.4006 Welded Reducers , Stainless Steel Forged Unions in 1.4002 , Stainless Steel 1.4002 Forged Unions , SS 1.4002 Forged Unions , Stainless Steel Forged Unions in 1.4006 , Stainless Steel 1.4006 Forged Unions , SS 1.4006 Forged Unions , Stainless Steel Seamless Unions in 1.4002 , Stainless Steel 1.4002 Seamless Unions , SS 1.4002 Seamless Unions , Stainless Steel Seamless Unions in 1.4006 , Stainless Steel 1.4006 Seamless Unions , SS 1.4006 Seamless Unions , Stainless Steel Welded Unions in 1.4002 , Stainless Steel 1.4002 Welded Unions , SS 1.4002 Welded Unions , Stainless Steel Welded Unions in 1.4006 , Stainless Steel 1.4006 Welded Unions , SS 1.4006 Welded Unions , Stainless Steel Forged Cross in 1.4002 , Stainless Steel 1.4002 Forged Cross , SS 1.4002 Forged Cross , Stainless Steel Forged Cross in 1.4006 , Stainless Steel 1.4006 Forged Cross , SS 1.4006 Forged Cross , Stainless Steel Seamless Cross in 1.4002 , Stainless Steel 1.4002 Seamless Cross , SS 1.4002 Seamless Cross , Stainless Steel Seamless Cross in 1.4006 , Stainless Steel 1.4006 Seamless Cross , SS 1.4006 Seamless Cross , Stainless Steel Welded Cross in 1.4002 , Stainless Steel 1.4002 Welded Cross , SS 1.4002 Welded Cross , Stainless Steel Welded Cross in 1.4006 , Stainless Steel 1.4006 Welded Cross , SS 1.4006 Welded Cross , Stainless Steel Forged Nipple in 1.4002 , Stainless Steel 1.4002 Forged Nipple , SS 1.4002 Forged Nipple , Stainless Steel Forged Nipple in 1.4006 , Stainless Steel 1.4006 Forged Nipple , SS 1.4006 Forged Nipple , Stainless Steel Seamless Nipple in 1.4002 , Stainless Steel 1.4002 Seamless Nipple , SS 1.4002 Seamless Nipple , Stainless Steel Seamless Nipple in 1.4006 , Stainless Steel 1.4006 Seamless Nipple , SS 1.4006 Seamless Nipple , Stainless Steel Welded Nipple in 1.4002 , Stainless Steel 1.4002 Welded Nipple , SS 1.4002 Welded Nipple , Stainless Steel Welded Nipple in 1.4006 , Stainless Steel 1.4006 Welded Nipple , SS 1.4006 Welded Nipple , Stainless Steel Socket Weld Pipe Elbow in 1.4002 , Stainless Steel 1.4002 Socket Weld Pipe Elbow , SS 1.4002 Socket Weld Pipe Elbow , Stainless Steel Socket Weld Pipe Elbow in 1.4006 , Stainless Steel 1.4006 Socket Weld Pipe Elbow , SS 1.4006 Socket Weld Pipe Elbow , Stainless Steel Threaded Pipe Elbow in 1.4002 , Stainless Steel 1.4002 Threaded Pipe Elbow , SS 1.4002 Threaded Pipe Elbow , Stainless Steel Threaded Pipe Elbow in 1.4006 , Stainless Steel 1.4006 Threaded Pipe Elbow , SS 1.4006 Threaded Pipe Elbow , Stainless Steel Socket Weld 90 Degree Elbow in 1.4 Stainless Steel 1.4002 Socket Weld 90 Degree Elbow SS 1.4002 Socket Weld 90 Degree Elbow , Stainless Steel 1.4006 Socket Weld 90 Degree Elbow SS 1.4006 Socket Weld 90 Degree Elbow , Stainless Steel Butt Weld 90 Degree Elbow in 1.400 Stainless Steel 1.4002 Butt Weld 90 Degree Elbow , SS 1.4002 Butt Weld 90 Degree Elbow , Stainless Steel 1.4006 Butt Weld 90 Degree Elbow , SS 1.4006 Butt Weld 90 Degree Elbow , Stainless Steel Threaded 90 Degree Elbow in 1.4002 Stainless Steel 1.4002 Threaded 90 Degree Elbow , SS 1.4002 Threaded 90 Degree Elbow , Stainless Steel Threaded 90 Degree Elbow in 1.4006 Stainless Steel 1.4006 Threaded 90 Degree Elbow , SS 1.4006 Threaded 90 Degree Elbow , Stainless Steel Socket Weld 90 Degree Long Radius Stainless Steel 1.4002 Socket Weld 90 Degree Long SS 1.4002 Socket Weld 90 Degree Long Radius Elbow Stainless Steel 1.4006 Socket Weld 90 Degree Long SS 1.4006 Socket Weld 90 Degree Long Radius Elbow Stainless Steel Butt Weld 90 Degree Long Radius El Stainless Steel 1.4002 Butt Weld 90 Degree Long Ra SS 1.4002 Butt Weld 90 Degree Long Radius Elbow , Stainless Steel 1.4006 Butt Weld 90 Degree Long Ra SS 1.4006 Butt Weld 90 Degree Long Radius Elbow , Stainless Steel Threaded 90 Degree Long Radius Elb Stainless Steel 1.4002 Threaded 90 Degree Long Rad SS 1.4002 Threaded 90 Degree Long Radius Elbow , Stainless Steel 1.4006 Threaded 90 Degree Long Rad SS 1.4006 Threaded 90 Degree Long Radius Elbow , Stainless Steel Socket Weld 45 Degree Long Radius Stainless Steel 1.4002 Socket Weld 45 Degree Long SS 1.4002 Socket Weld 45 Degree Long Radius Elbow Stainless Steel 1.4006 Socket Weld 45 Degree Long SS 1.4006 Socket Weld 45 Degree Long Radius Elbow Stainless Steel Butt Weld 45 Degree Long Radius El Stainless Steel 1.4002 Butt Weld 45 Degree Long Ra SS 1.4002 Butt Weld 45 Degree Long Radius Elbow , Stainless Steel 1.4006 Butt Weld 45 Degree Long Ra SS 1.4006 Butt Weld 45 Degree Long Radius Elbow , Stainless Steel Threaded 45 Degree Long Radius Elb Stainless Steel 1.4002 Threaded 45 Degree Long Rad SS 1.4002 Threaded 45 Degree Long Radius Elbow , Stainless Steel 1.4006 Threaded 45 Degree Long Rad SS 1.4006 Threaded 45 Degree Long Radius Elbow , Stainless Steel Socket Weld 90 Degree Short Radius Stainless Steel 1.4002 Socket Weld 90 Degree Short SS 1.4002 Socket Weld 90 Degree Short Radius Elbow Stainless Steel 1.4006 Socket Weld 90 Degree Short SS 1.4006 Socket Weld 90 Degree Short Radius Elbow Stainless Steel Butt Weld 90 Degree Short Radius E Stainless Steel 1.4002 Butt Weld 90 Degree Short R SS 1.4002 Butt Weld 90 Degree Short Radius Elbow , Stainless Steel 1.4006 Butt Weld 90 Degree Short R SS 1.4006 Butt Weld 90 Degree Short Radius Elbow , Stainless Steel Threaded 90 Degree Short Radius El Stainless Steel 1.4002 Threaded 90 Degree Short Ra SS 1.4002 Threaded 90 Degree Short Radius Elbow , Stainless Steel 1.4006 Threaded 90 Degree Short Ra SS 1.4006 Threaded 90 Degree Short Radius Elbow , Stainless Steel Socket Weld 45 Degree Short Radius Stainless Steel 1.4002 Socket Weld 45 Degree Short SS 1.4002 Socket Weld 45 Degree Short Radius Elbow Stainless Steel 1.4006 Socket Weld 45 Degree Short SS 1.4006 Socket Weld 45 Degree Short Radius Elbow Stainless Steel Butt Weld 45 Degree Short Radius E Stainless Steel 1.4002 Butt Weld 45 Degree Short R SS 1.4002 Butt Weld 45 Degree Short Radius Elbow , Stainless Steel 1.4006 Butt Weld 45 Degree Short R SS 1.4006 Butt Weld 45 Degree Short Radius Elbow , Stainless Steel Threaded 45 Degree Short Radius El Stainless Steel 1.4002 Threaded 45 Degree Short Ra SS 1.4002 Threaded 45 Degree Short Radius Elbow , Stainless Steel 1.4006 Threaded 45 Degree Short Ra SS 1.4006 Threaded 45 Degree Short Radius Elbow , SS 1.4002 Socket Weld 90 Degree Long Radius Bend , Stainless Steel Butt Weld 90 Degree Long Radius Be SS 1.4002 Butt Weld 90 Degree Long Radius Bend , SS 1.4006 Butt Weld 90 Degree Long Radius Bend , Stainless Steel Threaded 90 Degree Long Radius Ben SS 1.4002 Threaded 90 Degree Long Radius Bend , SS 1.4006 Threaded 90 Degree Long Radius Bend , SS 1.4002 Socket Weld 45 Degree Long Radius Bend , SS 1.4006 Socket Weld 45 Degree Long Radius Bend , Stainless Steel Butt Weld 45 Degree Long Radius Be SS 1.4002 Butt Weld 45 Degree Long Radius Bend , SS 1.4006 Butt Weld 45 Degree Long Radius Bend , Stainless Steel Threaded 45 Degree Long Radius Ben SS 1.4002 Threaded 45 Degree Long Radius Bend , SS 1.4006 Threaded 45 Degree Long Radius Bend , SS 1.4002 Socket Weld 90 Degree Short Radius Bend SS 1.4006 Socket Weld 90 Degree Short Radius Bend Stainless Steel Butt Weld 90 Degree Short Radius B SS 1.4002 Butt Weld 90 Degree Short Radius Bend , SS 1.4006 Butt Weld 90 Degree Short Radius Bend , Stainless Steel Threaded 90 Degree Short Radius Be SS 1.4002 Threaded 90 Degree Short Radius Bend , SS 1.4006 Threaded 90 Degree Short Radius Bend , SS 1.4002 Socket Weld 45 Degree Short Radius Bend SS 1.4006 Socket Weld 45 Degree Short Radius Bend Stainless Steel Butt Weld 45 Degree Short Radius B SS 1.4002 Butt Weld 45 Degree Short Radius Bend , SS 1.4006 Butt Weld 45 Degree Short Radius Bend , Stainless Steel Threaded 45 Degree Short Radius Be SS 1.4002 Threaded 45 Degree Short Radius Bend , SS 1.4006 Threaded 45 Degree Short Radius Bend , Stainless Steel Socket Weld 45 Degree Elbow in 1.4 Stainless Steel 1.4002 Socket Weld 45 Degree Elbow SS 1.4002 Socket Weld 45 Degree Elbow , Stainless Steel 1.4006 Socket Weld 45 Degree Elbow SS 1.4006 Socket Weld 45 Degree Elbow , Stainless Steel Butt Weld 45 Degree Elbow in 1.400 Stainless Steel 1.4002 Butt Weld 45 Degree Elbow , SS 1.4002 Butt Weld 45 Degree Elbow , Stainless Steel 1.4006 Butt Weld 45 Degree Elbow , SS 1.4006 Butt Weld 45 Degree Elbow , Stainless Steel Threaded 45 Degree Elbow in 1.4002 Stainless Steel 1.4002 Threaded 45 Degree Elbow , SS 1.4002 Threaded 45 Degree Elbow , Stainless Steel Threaded 45 Degree Elbow in 1.4006 Stainless Steel 1.4006 Threaded 45 Degree Elbow , SS 1.4006 Threaded 45 Degree Elbow , Stainless Steel Socket Weld Long Radius Elbow in 1 Stainless Steel 1.4002 Socket Weld Long Radius Elb SS 1.4002 Socket Weld Long Radius Elbow , Stainless Steel 1.4006 Socket Weld Long Radius Elb SS 1.4006 Socket Weld Long Radius Elbow , Stainless Steel Threaded Long Radius Elbow in 1.40 Stainless Steel 1.4002 Threaded Long Radius Elbow SS 1.4002 Threaded Long Radius Elbow , Stainless Steel 1.4006 Threaded Long Radius Elbow SS 1.4006 Threaded Long Radius Elbow , Stainless Steel Socket Weld Short Radius Elbow in Stainless Steel 1.4002 Socket Weld Short Radius El SS 1.4002 Socket Weld Short Radius Elbow , Stainless Steel 1.4006 Socket Weld Short Radius El SS 1.4006 Socket Weld Short Radius Elbow , Stainless Steel Butt Weld Short Radius Elbow in 1. Stainless Steel 1.4002 Butt Weld Short Radius Elbo SS 1.4002 Butt Weld Short Radius Elbow , Stainless Steel 1.4006 Butt Weld Short Radius Elbo SS 1.4006 Butt Weld Short Radius Elbow , Stainless Steel Threaded Short Radius Elbow in 1.4 Stainless Steel 1.4002 Threaded Short Radius Elbow SS 1.4002 Threaded Short Radius Elbow , Stainless Steel 1.4006 Threaded Short Radius Elbow SS 1.4006 Threaded Short Radius Elbow , Stainless Steel Socket Weld Reducing Elbow in 1.40 Stainless Steel 1.4002 Socket Weld Reducing Elbow SS 1.4002 Socket Weld Reducing Elbow , Stainless Steel 1.4006 Socket Weld Reducing Elbow SS 1.4006 Socket Weld Reducing Elbow , Stainless Steel Butt Weld Reducing Elbow in 1.4002 Stainless Steel 1.4002 Butt Weld Reducing Elbow , SS 1.4002 Butt Weld Reducing Elbow , Stainless Steel Butt Weld Reducing Elbow in 1.4006 Stainless Steel 1.4006 Butt Weld Reducing Elbow , SS 1.4006 Butt Weld Reducing Elbow , Stainless Steel Threaded Reducing Elbow in 1.4002 Stainless Steel 1.4002 Threaded Reducing Elbow , SS 1.4002 Threaded Reducing Elbow , Stainless Steel Threaded Reducing Elbow in 1.4006 Stainless Steel 1.4006 Threaded Reducing Elbow , SS 1.4006 Threaded Reducing Elbow , Stainless Steel Socket Weld Pipe Bend in 1.4002 , Stainless Steel 1.4002 Socket Weld Pipe Bend , SS 1.4002 Socket Weld Pipe Bend , Stainless Steel Socket Weld Pipe Bend in 1.4006 , Stainless Steel 1.4006 Socket Weld Pipe Bend , SS 1.4006 Socket Weld Pipe Bend , Stainless Steel Butt Weld Pipe Bend in 1.4002 , Stainless Steel 1.4002 Butt Weld Pipe Bend , SS 1.4002 Butt Weld Pipe Bend , Stainless Steel Butt Weld Pipe Bend in 1.4006 , Stainless Steel 1.4006 Butt Weld Pipe Bend , SS 1.4006 Butt Weld Pipe Bend , Stainless Steel Threaded Pipe Bend in 1.4002 , Stainless Steel 1.4002 Threaded Pipe Bend , SS 1.4002 Threaded Pipe Bend , Stainless Steel Threaded Pipe Bend in 1.4006 , Stainless Steel 1.4006 Threaded Pipe Bend , SS 1.4006 Threaded Pipe Bend , Stainless Steel Socket Weld Miter Bend in 1.4002 , Stainless Steel 1.4002 Socket Weld Miter Bend , SS 1.4002 Socket Weld Miter Bend , Stainless Steel Socket Weld Miter Bend in 1.4006 , Stainless Steel 1.4006 Socket Weld Miter Bend , SS 1.4006 Socket Weld Miter Bend , Stainless Steel Butt Weld Miter Bend in 1.4002 , Stainless Steel 1.4002 Butt Weld Miter Bend , SS 1.4002 Butt Weld Miter Bend , Stainless Steel Butt Weld Miter Bend in 1.4006 , Stainless Steel 1.4006 Butt Weld Miter Bend , SS 1.4006 Butt Weld Miter Bend , Stainless Steel Threaded Miter Bend in 1.4002 , Stainless Steel 1.4002 Threaded Miter Bend , SS 1.4002 Threaded Miter Bend , Stainless Steel Threaded Miter Bend in 1.4006 , Stainless Steel 1.4006 Threaded Miter Bend , SS 1.4006 Threaded Miter Bend , Stainless Steel Socket Weld 180 Degree Elbow in 1. Stainless Steel 1.4002 Socket Weld 180 Degree Elbo SS 1.4002 Socket Weld 180 Degree Elbow , Stainless Steel 1.4006 Socket Weld 180 Degree Elbo SS 1.4006 Socket Weld 180 Degree Elbow , Stainless Steel Butt Weld 180 Degree Elbow in 1.40 Stainless Steel 1.4002 Butt Weld 180 Degree Elbow SS 1.4002 Butt Weld 180 Degree Elbow , Stainless Steel 1.4006 Butt Weld 180 Degree Elbow SS 1.4006 Butt Weld 180 Degree Elbow , Stainless Steel Socket Weld Retrun Elbow in 1.4002 Stainless Steel 1.4002 Socket Weld Retrun Elbow , SS 1.4002 Socket Weld Retrun Elbow , Stainless Steel Socket Weld Retrun Elbow in 1.4006 Stainless Steel 1.4006 Socket Weld Retrun Elbow , SS 1.4006 Socket Weld Retrun Elbow , Stainless Steel Butt Weld Retrun Elbow in 1.4002 , Stainless Steel 1.4002 Butt Weld Retrun Elbow , SS 1.4002 Butt Weld Retrun Elbow , Stainless Steel Butt Weld Retrun Elbow in 1.4006 , Stainless Steel 1.4006 Butt Weld Retrun Elbow , SS 1.4006 Butt Weld Retrun Elbow , Stainless Steel Threaded Retrun Elbow in 1.4002 , Stainless Steel 1.4002 Threaded Retrun Elbow , SS 1.4002 Threaded Retrun Elbow , Stainless Steel Threaded Retrun Elbow in 1.4006 , Stainless Steel 1.4006 Threaded Retrun Elbow , SS 1.4006 Threaded Retrun Elbow , Stainless Steel Socket Weld Pipe Tee in 1.4002 , Stainless Steel 1.4002 Socket Weld Pipe Tee , SS 1.4002 Socket Weld Pipe Tee , Stainless Steel Socket Weld Pipe Tee in 1.4006 , Stainless Steel 1.4006 Socket Weld Pipe Tee , SS 1.4006 Socket Weld Pipe Tee , Stainless Steel Butt Weld Pipe Tee in 1.4002 , Stainless Steel 1.4002 Butt Weld Pipe Tee , SS 1.4002 Butt Weld Pipe Tee , Stainless Steel Butt Weld Pipe Tee in 1.4006 , Stainless Steel 1.4006 Butt Weld Pipe Tee , SS 1.4006 Butt Weld Pipe Tee , Stainless Steel Threaded Pipe Tee in 1.4002 , Stainless Steel 1.4002 Threaded Pipe Tee , SS 1.4002 Threaded Pipe Tee , Stainless Steel Threaded Pipe Tee in 1.4006 , Stainless Steel 1.4006 Threaded Pipe Tee , SS 1.4006 Threaded Pipe Tee , Stainless Steel Socket Weld Equal Tee in 1.4002 , Stainless Steel 1.4002 Socket Weld Equal Tee , SS 1.4002 Socket Weld Equal Tee , Stainless Steel Socket Weld Equal Tee in 1.4006 , Stainless Steel 1.4006 Socket Weld Equal Tee , SS 1.4006 Socket Weld Equal Tee , Stainless Steel Butt Weld Equal Tee in 1.4002 , Stainless Steel 1.4002 Butt Weld Equal Tee , SS 1.4002 Butt Weld Equal Tee , Stainless Steel Butt Weld Equal Tee in 1.4006 , Stainless Steel 1.4006 Butt Weld Equal Tee , SS 1.4006 Butt Weld Equal Tee , Stainless Steel Threaded Equal Tee in 1.4002 , Stainless Steel 1.4002 Threaded Equal Tee , SS 1.4002 Threaded Equal Tee , Stainless Steel Threaded Equal Tee in 1.4006 , Stainless Steel 1.4006 Threaded Equal Tee , SS 1.4006 Threaded Equal Tee , Stainless Steel Socket Weld Straight Tee in 1.40 Stainless Steel 1.4002 Socket Weld Straight Tee SS 1.4002 Socket Weld Straight Tee , Stainless Steel 1.4006 Socket Weld Straight Tee SS 1.4006 Socket Weld Straight Tee , Stainless Steel Butt Weld Straight Tee in 1.4002 Stainless Steel 1.4002 Butt Weld Straight Tee , SS 1.4002 Butt Weld Straight Tee , Stainless Steel Butt Weld Straight Tee in 1.4006 Stainless Steel 1.4006 Butt Weld Straight Tee , SS 1.4006 Butt Weld Straight Tee , Stainless Steel Threaded Straight Tee in 1.4002 Stainless Steel 1.4002 Threaded Straight Tee , SS 1.4002 Threaded Straight Tee , Stainless Steel Threaded Straight Tee in 1.4006 Stainless Steel 1.4006 Threaded Straight Tee , SS 1.4006 Threaded Straight Tee , Stainless Steel Socket Weld Reducing Tee in 1.4002 Stainless Steel 1.4002 Socket Weld Reducing Tee , SS 1.4002 Socket Weld Reducing Tee , Stainless Steel Socket Weld Reducing Tee in 1.4006 Stainless Steel 1.4006 Socket Weld Reducing Tee , SS 1.4006 Socket Weld Reducing Tee , Stainless Steel Butt Weld Reducing Tee in 1.4002 , Stainless Steel 1.4002 Butt Weld Reducing Tee , SS 1.4002 Butt Weld Reducing Tee , Stainless Steel Butt Weld Reducing Tee in 1.4006 , Stainless Steel 1.4006 Butt Weld Reducing Tee , SS 1.4006 Butt Weld Reducing Tee , Stainless Steel Threaded Reducing Tee in 1.4002 , Stainless Steel 1.4002 Threaded Reducing Tee , SS 1.4002 Threaded Reducing Tee , Stainless Steel Threaded Reducing Tee in 1.4006 , Stainless Steel 1.4006 Threaded Reducing Tee , SS 1.4006 Threaded Reducing Tee , Stainless Steel Socket Weld Unequal Tee in 1.4002 Stainless Steel 1.4002 Socket Weld Unequal Tee , SS 1.4002 Socket Weld Unequal Tee , Stainless Steel Socket Weld Unequal Tee in 1.4006 Stainless Steel 1.4006 Socket Weld Unequal Tee , SS 1.4006 Socket Weld Unequal Tee , Stainless Steel Butt Weld Unequal Tee in 1.4002 , Stainless Steel 1.4002 Butt Weld Unequal Tee , SS 1.4002 Butt Weld Unequal Tee , Stainless Steel Butt Weld Unequal Tee in 1.4006 , Stainless Steel Threaded Unequal Tee in 1.4002 , Stainless Steel 1.4002 Threaded Unequal Tee , SS 1.4002 Threaded Unequal Tee , Stainless Steel Threaded Unequal Tee in 1.4006 , Stainless Steel 1.4006 Threaded Unequal Tee , SS 1.4006 Threaded Unequal Tee , Stainless Steel Socket Weld Barred Tee in 1.4002 , Stainless Steel 1.4002 Socket Weld Barred Tee , SS 1.4002 Socket Weld Barred Tee , Stainless Steel Socket Weld Barred Tee in 1.4006 , Stainless Steel 1.4006 Socket Weld Barred Tee , SS 1.4006 Socket Weld Barred Tee , Stainless Steel Butt Weld Barred Tee in 1.4002 , Stainless Steel 1.4002 Butt Weld Barred Tee , SS 1.4002 Butt Weld Barred Tee , Stainless Steel Butt Weld Barred Tee in 1.4006 , Stainless Steel 1.4006 Butt Weld Barred Tee , SS 1.4006 Butt Weld Barred Tee , Stainless Steel Threaded Barred Tee in 1.4002 , Stainless Steel 1.4002 Threaded Barred Tee , SS 1.4002 Threaded Barred Tee , Stainless Steel Threaded Barred Tee in 1.4006 , Stainless Steel 1.4006 Threaded Barred Tee , SS 1.4006 Threaded Barred Tee , Stainless Steel Socket Weld Wye Tee in 1.4002 , Stainless Steel 1.4002 Socket Weld Wye Tee , SS 1.4002 Socket Weld Wye Tee , Stainless Steel Socket Weld Wye Tee in 1.4006 , Stainless Steel 1.4006 Socket Weld Wye Tee , SS 1.4006 Socket Weld Wye Tee , Stainless Steel Butt Weld Wye Tee in 1.4002 , Stainless Steel 1.4002 Butt Weld Wye Tee , SS 1.4002 Butt Weld Wye Tee , Stainless Steel Butt Weld Wye Tee in 1.4006 , Stainless Steel 1.4006 Butt Weld Wye Tee , SS 1.4006 Butt Weld Wye Tee , Stainless Steel Threaded Wye Tee in 1.4002 , Stainless Steel 1.4002 Threaded Wye Tee , SS 1.4002 Threaded Wye Tee , Stainless Steel Threaded Wye Tee in 1.4006 , Stainless Steel 1.4006 Threaded Wye Tee , SS 1.4006 Threaded Wye Tee , Stainless Steel Socket Weld Lateral Tee in 1.4002 Stainless Steel 1.4002 Socket Weld Lateral Tee , SS 1.4002 Socket Weld Lateral Tee , Stainless Stee Stainless Steel 1.4006 Socket Weld Lateral Tee , SS 1.4006 Socket Weld Lateral Tee , Stainless Stee Stainless Steel 1.4016 Socket Weld Lateral Tee , Stainless Steel Butt Weld Lateral Tee in 1.4002 , Stainless Steel 1.4002 Butt Weld Lateral Tee , SS 1.4002 Butt Weld Lateral Tee , Stainless Steel Butt Weld Lateral Tee in 1.4006 , Stainless Steel 1.4006 Butt Weld Lateral Tee , SS 1.4006 Butt Weld Lateral Tee , Stainless Steel Threaded Lateral Tee in 1.4002 , Stainless Steel 1.4002 Threaded Lateral Tee , SS 1.4002 Threaded Lateral Tee , Stainless Steel Threaded Lateral Tee in 1.4006 , Stainless Steel 1.4006 Threaded Lateral Tee , SS 1.4006 Threaded Lateral Tee , Stainless Steel Socket Weld 45 DEGREE Tee in 1.400 Stainless Steel 1.4002 Socket Weld 45 DEGREE Tee , SS 1.4002 Socket Weld 45 DEGREE Tee , Stainless Steel 1.4006 Socket Weld 45 DEGREE Tee , SS 1.4006 Socket Weld 45 DEGREE Tee , Stainless Steel Butt Weld 45 DEGREE Tee in 1.4002 Stainless Steel 1.4002 Butt Weld 45 DEGREE Tee , SS 1.4002 Butt Weld 45 DEGREE Tee , Stainless Steel Butt Weld 45 DEGREE Tee in 1.4006 Stainless Steel 1.4006 Butt Weld 45 DEGREE Tee , SS 1.4006 Butt Weld 45 DEGREE Tee , Stainless Steel Threaded 45 DEGREE Tee in 1.4002 , Stainless Steel 1.4002 Threaded 45 DEGREE Tee , SS 1.4002 Threaded 45 DEGREE Tee , Stainless Steel Threaded 45 DEGREE Tee in 1.4006 , Stainless Steel 1.4006 Threaded 45 DEGREE Tee , SS 1.4006 Threaded 45 DEGREE Tee , Stainless Steel Socket Weld Cross in 1.4002 , Stainless Steel 1.4002 Socket Weld Cross , SS 1.4002 Socket Weld Cross , Stainless Steel Socket Weld Cross in 1.4006 , Stainless Steel 1.4006 Socket Weld Cross , SS 1.4006 Socket Weld Cross , Stainless Steel Butt Weld Cross in 1.4002 , Stainless Steel 1.4002 Butt Weld Cross , SS 1.4002 Butt Weld Cross , Stainless Steel Butt Weld Cross in 1.4006 , Stainless Steel 1.4006 Butt Weld Cross , SS 1.4006 Butt Weld Cross , Stainless Steel Threaded Cross in 1.4002 , Stainless Steel 1.4002 Threaded Cross , SS 1.4002 Threaded Cross , Stainless Steel Threaded Cross in 1.4006 , Stainless Steel 1.4006 Threaded Cross , SS 1.4006 Threaded Cross , Stainless Steel Socket Weld Pipe Reducers in 1.400 Stainless Steel 1.4002 Socket Weld Pipe Reducers , SS 1.4002 Socket Weld Pipe Reducers , Stainless Steel 1.4006 Socket Weld Pipe Reducers , SS 1.4006 Socket Weld Pipe Reducers , Stainless Steel Butt Weld Pipe Reducers in 1.4002 Stainless Steel 1.4002 Butt Weld Pipe Reducers , SS 1.4002 Butt Weld Pipe Reducers , Stainless Steel Butt Weld Pipe Reducers in 1.4006 Stainless Steel 1.4006 Butt Weld Pipe Reducers , SS 1.4006 Butt Weld Pipe Reducers , Stainless Steel Threaded Pipe Reducers in 1.4002 , Stainless Steel 1.4002 Threaded Pipe Reducers , SS 1.4002 Threaded Pipe Reducers , Stainless Steel Threaded Pipe Reducers in 1.4006 , Stainless Steel 1.4006 Threaded Pipe Reducers , SS 1.4006 Threaded Pipe Reducers , Stainless Steel Socket Weld Eccentric reducer in 1 Stainless Steel 1.4002 Socket Weld Eccentric reduc SS 1.4002 Socket Weld Eccentric reducer , Stainless Steel 1.4006 Socket Weld Eccentric reduc SS 1.4006 Socket Weld Eccentric reducer , Stainless Steel Butt Weld Eccentric reducer in 1.4 Stainless Steel 1.4002 Butt Weld Eccentric reducer SS 1.4002 Butt Weld Eccentric reducer , Stainless Steel 1.4006 Butt Weld Eccentric reducer SS 1.4006 Butt Weld Eccentric reducer , Stainless Steel Threaded Eccentric reducer in 1.40 Stainless Steel 1.4002 Threaded Eccentric reducer SS 1.4002 Threaded Eccentric reducer , Stainless Steel 1.4006 Threaded Eccentric reducer SS 1.4006 Threaded Eccentric reducer , Stainless Steel Socket Weld Swage Reducer in 1.400 Stainless Steel 1.4002 Socket Weld Swage Reducer , SS 1.4002 Socket Weld Swage Reducer , Stainless Steel 1.4006 Socket Weld Swage Reducer , SS 1.4006 Socket Weld Swage Reducer , Stainless Steel Butt Weld Swage Reducer in 1.4002 Stainless Steel 1.4002 Butt Weld Swage Reducer , SS 1.4002 Butt Weld Swage Reducer , Stainless Steel Butt Weld Swage Reducer in 1.4006 Stainless Steel 1.4006 Butt Weld Swage Reducer , SS 1.4006 Butt Weld Swage Reducer , Stainless Steel Threaded Swage Reducer in 1.4002 , Stainless Steel 1.4002 Threaded Swage Reducer , SS 1.4002 Threaded Swage Reducer , Stainless Steel Threaded Swage Reducer in 1.4006 , Stainless Steel 1.4006 Threaded Swage Reducer , SS 1.4006 Threaded Swage Reducer , Stainless Steel Plain End Swage Reducer in 1.4002 Stainless Steel 1.4002 Plain End Swage Reducer , SS 1.4002 Plain End Swage Reducer , Stainless Steel Plain End Swage Reducer in 1.4006 Stainless Steel 1.4006 Plain End Swage Reducer , SS 1.4006 Plain End Swage Reducer , Stainless Steel Threaded End Swage Reducer in 1.40 Stainless Steel 1.4002 Threaded End Swage Reducer SS 1.4002 Threaded End Swage Reducer , Stainless Steel 1.4006 Threaded End Swage Reducer SS 1.4006 Threaded End Swage Reducer , Stainless Steel Socket weld Pipe Caps in 1.4002 , Stainless Steel 1.4002 Socket weld Pipe Caps , SS 1.4002 Socket weld Pipe Caps , Stainless Steel Socket weld Pipe Caps in 1.4006 , Stainless Steel 1.4006 Socket weld Pipe Caps , SS 1.4006 Socket weld Pipe Caps , Stainless Steel Butt Weld Pipe Caps in 1.4002 , Stainless Steel 1.4002 Butt Weld Pipe Caps , SS 1.4002 Butt Weld Pipe Caps , Stainless Steel Butt Weld Pipe Caps in 1.4006 , Stainless Steel 1.4006 Butt Weld Pipe Caps , SS 1.4006 Butt Weld Pipe Caps , Stainless Steel Threaded Pipe Caps in 1.4002 , Stainless Steel 1.4002 Threaded Pipe Caps , SS 1.4002 Threaded Pipe Caps , Stainless Steel Threaded Pipe Caps in 1.4006 , Stainless Steel 1.4006 Threaded Pipe Caps , SS 1.4006 Threaded Pipe Caps , Stainless Steel Socket weld Piping Union in 1.400 Stainless Steel 1.4002 Socket weld Piping Union , SS 1.4002 Socket weld Piping Union , Stainless Steel 1.4006 Socket weld Piping Union , SS 1.4006 Socket weld Piping Union , Stainless Steel Butt Weld Piping Union in 1.4002 , Stainless Steel 1.4002 Butt Weld Piping Union , SS 1.4002 Butt Weld Piping Union , Stainless Steel Butt Weld Piping Union in 1.4006 , Stainless Steel 1.4006 Butt Weld Piping Union , SS 1.4006 Butt Weld Piping Union , Stainless Steel Threaded Piping Union in 1.4002 , Stainless Steel 1.4002 Threaded Piping Union , SS 1.4002 Threaded Piping Union , Stainless Steel Threaded Piping Union in 1.4006 , Stainless Steel 1.4006 Threaded Piping Union , SS 1.4006 Threaded Piping Union , Stainless Steel Socket weld Unions in 1.4002 , Stainless Steel 1.4002 Socket weld Unions , SS 1.4002 Socket weld Unions , Stainless Steel Socket weld Unions in 1.4006 , Stainless Steel 1.4006 Socket weld Unions , SS 1.4006 Socket weld Unions , Stainless Steel Butt Weld Unions Available In 1.4 Stainless Steel Butt Weld Unions in 1.4002 , Stainless Steel 1.4002 Butt Weld Unions , SS 1.4002 Butt Weld Unions , Stainless Steel Butt Weld Unions in 1.4006 , Stainless Steel 1.4006 Butt Weld Unions , Stainless Steel Threaded Unions in 1.4002 , Stainless Steel 1.4002 Threaded Unions , SS 1.4002 Threaded Unions , Stainless Steel Threaded Unions in 1.4006 , Stainless Steel 1.4006 Threaded Unions , SS 1.4006 Threaded Unions , Stainless Steel Socket weld Pipe Coupling in 1.40 Stainless Steel 1.4002 Socket weld Pipe Coupling SS 1.4002 Socket weld Pipe Coupling , Stainless Steel 1.4006 Socket weld Pipe Coupling SS 1.4006 Socket weld Pipe Coupling , Stainless Steel Butt Weld Pipe Coupling in 1.4002 Stainless Steel 1.4002 Butt Weld Pipe Coupling , SS 1.4002 Butt Weld Pipe Coupling , Stainless Steel Butt Weld Pipe Coupling in 1.4006 Stainless Steel 1.4006 Butt Weld Pipe Coupling , SS 1.4006 Butt Weld Pipe Coupling , Stainless Steel Threaded Pipe Coupling in 1.4002 , Stainless Steel 1.4002 Threaded Pipe Coupling , SS 1.4002 Threaded Pipe Coupling , Stainless Steel Threaded Pipe Coupling in 1.4006 , Stainless Steel 1.4006 Threaded Pipe Coupling , SS 1.4006 Threaded Pipe Coupling , Stainless Steel Socket weld Full Coupling in 1.40 Stainless Steel 1.4002 Socket weld Full Coupling SS 1.4002 Socket weld Full Coupling , Stainless Steel 1.4006 Socket weld Full Coupling SS 1.4006 Socket weld Full Coupling , Stainless Steel Butt Weld Full Coupling in 1.4002 Stainless Steel 1.4002 Butt Weld Full Coupling , SS 1.4002 Butt Weld Full Coupling , Stainless Steel Butt Weld Full Coupling in 1.4006 Stainless Steel 1.4006 Butt Weld Full Coupling , SS 1.4006 Butt Weld Full Coupling , Stainless Steel Threaded Full Coupling in 1.4002 , Stainless Steel 1.4002 Threaded Full Coupling , SS 1.4002 Threaded Full Coupling , Stainless Steel Threaded Full Coupling in 1.4006 , Stainless Steel 1.4006 Threaded Full Coupling , SS 1.4006 Threaded Full Coupling , Stainless Steel Socket weld Half Coupling in 1.40 Stainless Steel 1.4002 Socket weld Half Coupling SS 1.4002 Socket weld Half Coupling , Stainless Steel 1.4006 Socket weld Half Coupling SS 1.4006 Socket weld Half Coupling , Stainless Steel Butt Weld Half Coupling in 1.4002 Stainless Steel 1.4002 Butt Weld Half Coupling , SS 1.4002 Butt Weld Half Coupling , Stainless Steel Butt Weld Half Coupling in 1.4006 Stainless Steel 1.4006 Butt Weld Half Coupling , SS 1.4006 Butt Weld Half Coupling , Stainless Steel Threaded Half Coupling in 1.4002 , Stainless Steel 1.4002 Threaded Half Coupling , SS 1.4002 Threaded Half Coupling , Stainless Steel Threaded Half Coupling in 1.4006 , Stainless Steel 1.4006 Threaded Half Coupling , SS 1.4006 Threaded Half Coupling , Stainless Steel Socket weld Reducing Coupling in Stainless Steel 1.4002 Socket weld Reducing Coupl SS 1.4002 Socket weld Reducing Coupling , Stainless Steel 1.4006 Socket weld Reducing Coupl SS 1.4006 Socket weld Reducing Coupling , Stainless Steel Butt Weld Reducing Coupling in 1.4 Stainless Steel 1.4002 Butt Weld Reducing Coupling SS 1.4002 Butt Weld Reducing Coupling , Stainless Steel 1.4006 Butt Weld Reducing Coupling SS 1.4006 Butt Weld Reducing Coupling , Stainless Steel Threaded Reducing Coupling in 1.40 Stainless Steel 1.4002 Threaded Reducing Coupling SS 1.4002 Threaded Reducing Coupling , Stainless Steel 1.4006 Threaded Reducing Coupling SS 1.4006 Threaded Reducing Coupling , Stainless Steel Threaded couplings in 1.4002 , Stainless Steel 1.4002 Threaded couplings , SS 1.4002 Threaded couplings , Stainless Steel Threaded couplings in 1.4006 , Stainless Steel 1.4006 Threaded couplings , SS 1.4006 Threaded couplings , Stainless Steel Socket weld couplings in 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, Stainless Steel Threaded Pipe Nipple in 1.4002 , Stainless Steel 1.4002 Threaded Pipe Nipple , SS 1.4002 Threaded Pipe Nipple , Stainless Steel Threaded Pipe Nipple in 1.4006 , Stainless Steel 1.4006 Threaded Pipe Nipple , SS 1.4006 Threaded Pipe Nipple , Stainless Steel Threaded Pipe Fittings in 1.4002 , Stainless Steel 1.4002 Threaded Pipe Fittings , SS 1.4002 Threaded Pipe Fittings , Stainless Steel Threaded Pipe Fittings in 1.4006 , Stainless Steel 1.4006 Threaded Pipe Fittings , SS 1.4006 Threaded Pipe Fittings , Stainless Steel Socket weld Pipe Fittings in 1.400 Stainless Steel 1.4002 Socket weld Pipe Fittings , SS 1.4002 Socket weld Pipe Fittings , Stainless Steel 1.4006 Socket weld Pipe Fittings , SS 1.4006 Socket weld Pipe Fittings , Stainless Steel Butt Weld Pipe Fittings in 1.4002 Stainless Steel 1.4002 Butt Weld Pipe Fittings , SS 1.4002 Butt Weld Pipe Fittings , Stainless Steel Butt Weld Pipe Fittings in 1.4006 Stainless Steel 1.4006 Butt Weld Pipe Fittings , SS 1.4006 Butt Weld Pipe Fittings , Stainless Steel Socket weld Reducing Elbow in 1.40 Stainless Steel 1.4002 Socket weld Reducing Elbow SS 1.4002 Socket weld Reducing Elbow , Stainless Steel 1.4006 Socket weld Reducing Elbow SS 1.4006 Socket weld Reducing Elbow , Stainless Steel Socket weld Miter Bend in 1.4002 , Stainless Steel 1.4002 Socket weld Miter Bend , SS 1.4002 Socket weld Miter Bend , Stainless Steel Socket weld Miter Bend in 1.4006 , Stainless Steel 1.4006 Socket weld Miter Bend , SS 1.4006 Socket weld Miter Bend , Stainless Steel Socket weld 180 Degree Elbow in 1. Stainless Steel 1.4002 Socket weld 180 Degree Elbo SS 1.4002 Socket weld 180 Degree Elbow , Stainless Steel 1.4006 Socket weld 180 Degree Elbo SS 1.4006 Socket weld 180 Degree Elbow , Stainless Steel Threaded 180 Degree Elbow in 1.400 Stainless Steel 1.4002 Threaded 180 Degree Elbow , SS 1.4002 Threaded 180 Degree Elbow , Stainless Steel 1.4006 Threaded 180 Degree Elbow , SS 1.4006 Threaded 180 Degree Elbow , Stainless Steel Butt Weld Return Elbow in 1.4002 , Stainless Steel 1.4002 Butt Weld Return Elbow , SS 1.4002 Butt Weld Return Elbow , Stainless Steel Butt Weld Return Elbow in 1.4006 , Stainless Steel 1.4006 Butt Weld Return Elbow , SS 1.4006 Butt Weld Return Elbow , Stainless Steel Threaded Return Elbow in 1.4002 , Stainless Steel 1.4002 Threaded Return Elbow , SS 1.4002 Threaded Return Elbow , Stainless Steel Threaded Return Elbow in 1.4006 , Stainless Steel 1.4006 Threaded Return Elbow , SS 1.4006 Threaded Return Elbow , Stainless Steel Socket weld Return Elbow Available 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Phone Number

08042756490

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Email Address ladhanimetal@gmail.com

Mon-Thu: 10 AM - 2 PM • Fri: 3 PM - 7AM

Address Bengaluru, Karnataka, India

Bengaluru, India, 560001