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Titanium Stud M8

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Titanium Stud M8

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Titanium Stud M8 in Mumbai; Titanium Stud M8 in Delhi; Titanium Stud M8 in Bangalore; Titanium Stud M8 in Hyderabad; Titanium Stud M8 in Ahmedabad; Titanium Stud M8 in Chennai; Titanium Stud M8 in Kolkata; Titanium Stud M8 in Surat; Titanium Stud M8 in Pune; Titanium Stud M8 in Jaipur; Titanium Stud M8 in Lucknow; Titanium Stud M8 in Kanpur; Titanium Stud M8 in Nagpur; Titanium Stud M8 in Indore; Titanium Stud M8 in Thane; Titanium Stud M8 in Bhopal; Titanium Stud M8 in Visakhapatnam; Titanium Stud M8 in Pimpri-Chinchwad; Titanium Stud M8 in Patna; Titanium Stud M8 in Vadodara; Titanium Stud M8 in Ghaziabad; Titanium Stud M8 in Ludhiana; Titanium Stud M8 in Agra; Titanium Stud M8 in Nashik; Titanium Stud M8 in Faridabad; Titanium Stud M8 in Meerut; Titanium Stud M8 in Rajkot; Titanium Stud M8 in Kalyan-Dombivli; Titanium Stud M8 in Vasai-Virar; Titanium Stud M8 in Varanasi; Titanium Stud M8 in Srinagar; Titanium Stud M8 in Aurangabad; Titanium Stud M8 in Dhanbad; Titanium Stud M8 in Amritsar; 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Titanium Stud M8 in Hindupur; Titanium Stud M8 in Sasaram; Titanium Stud M8 in Hajipur; Titanium Stud M8 in Bhimavaram; Titanium Stud M8 in Kumbakonam; Titanium Stud M8 in Dehri; Titanium Stud M8 in Madanapalle; Titanium Stud M8 in Siwan; Titanium Stud M8 in Bettiah; Titanium Stud M8 in Guntakal; Titanium Stud M8 in Srikakulam; Titanium Stud M8 in Motihari; Titanium Stud M8 in Dharmavaram; Titanium Stud M8 in Gudivada; Titanium Stud M8 in Phagwara; Titanium Stud M8 in Narasaraopet; Titanium Stud M8 in Suryapet; Titanium Stud M8 in Miryalaguda; Titanium Stud M8 in Tadipatri; Titanium Stud M8 in Kishanganj; Titanium Stud M8 in Karaikudi; Titanium Stud M8 in Jamalpur; Titanium Stud M8 in Kavali; Titanium Stud M8 in Tadepalligudem; Titanium Stud M8 in Amaravati; Titanium Stud M8 in Buxar; Titanium Stud M8 in Jehanabad; Titanium Stud M8 in Aurangabad; Titanium Stud M8 in Gangtok; Titanium Stud M8 in Maharashtra; Titanium Stud M8 in Delhi; Titanium Stud M8 in Karnataka; Titanium Stud M8 in Telangana; Titanium Stud M8 in Gujarat; Titanium Stud M8 in Tamil Nadu; Titanium Stud M8 in West Bengal; Titanium Stud M8 in Rajasthan; Titanium Stud M8 in Uttar Pradesh; Titanium Stud M8 in Madhya Pradesh; Titanium Stud M8 in Andhra Pradesh; Titanium Stud M8 in Bihar; Titanium Stud M8 in Punjab; Titanium Stud M8 in Haryana; Titanium Stud M8 in Jammu and Kashmir; Titanium Stud M8 in Jharkhand; Titanium Stud M8 in Chhattisgarh; Titanium Stud M8 in Chandigarh; Titanium Stud M8 in Assam; Titanium Stud M8 in Odisha; Titanium Stud M8 in Kerala; Titanium Stud M8 in Uttarakhand; Titanium Stud M8 in Tripura; Titanium Stud M8 in Puducherry; Titanium Stud M8 in Mizoram; Titanium Stud M8 in Manipur; Titanium Stud M8 in Himachal Pradesh; Titanium Stud M8 in Sikkim;
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COLD ROLLED SHEET

QUALITU 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

QUALITU 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

QUALITU 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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