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Ladhani Metal Corporation is a manufacturer and stockist of a wide range of titanium valves, including: Titanium Full Bore and Flanged Valves, Titanium Needle Valves, Titanium Check Valves, Titanium Globe Valves, Titanium Gate Valves, Titanium Y Strainers, and other titanium forged fittings.
Titanium valves are available in a variety of material grades, ranging from the most commonly used Grade 2 to alloyed titanium grades such as Gr. 5, Gr. 7, and Gr. 12. Titanium alloys are also known as R50400, R50550, and R56400 in UNS.
Titanium valves are designed as per ANSI B16.34.
Titanium valves are primarily made from ASTM B381 Grade F2 and F5.
We manufacture our ball valves entirely from titanium, including:
Titanium Ball
Titanium Body
Titanium Handle
Titanium Fasteners
Titanium Flange
Ladhani Metal Corporation is a manufacturer, exporter, and supplier of titanium ball valves.
Our Titanium Ball Valve Products:
1000 - 6000 PSI Two-Piece Full Bore Ball Valve
1000 - 6000 PSI Three-Piece Full Bore Ball Valve
ANSI Class 150 – 900 Two-Piece Flanged Ball Valve
ANSI Class 150 – 900 Two-Piece Flanged Ball Valve Design Features:
Full Bar Machined Construction
Valve Design as per ANSI B16.34
2-Piece Body Design, Full Bore
Blow-Out-Proof Stem Design
Flange Face to Face: ANSI B16.10 Class 150/300 RF
Flange Dimension: ANSI B16.5 Class 150/300
End Type: Screwed & Welded End
NACE MR0175 is available
Ladhani Metal Corporation can also manufacture titanium ball valves in grades such as Titanium Grade 1, Titanium Grade 2, Titanium Grade 5, Titanium Grade 9, Titanium Grade 6, and Titanium Grade 23.
Available at the following locations:
Coimbatore, Rudrapur, Bhilai, Raigarh, Navi Mumbai, Aluva, Vijayawada, Firozabad, Panna, Panipat, Channapatna, Varanasi, Moradabad, Bareilly, Jamshedpur, Tiruppur, Rajahmundry, Bokaro Steel City, Kolkata, Durgapur, Kharagpur, Hosdurg, Haldia, Indore, Pithampur, Belagavi, Dibrugarh, Palakkad, Delhi, Noida, Kannur, Salem, Sivakasi, Kanpur, Rajkot, Kochi, Peenya, Surat, Rourkela, Visakhapatnam, Angul, Ahmedabad, Gandhinagar, Jamnagar, Vadodara, Bharuch-Ankleshwar, Ludhiana, Pimpri-Chinchwad, Mumbai, Bangalore, Thiruvananthapuram, Thrissur, Gajraula, Unnao, Sri City, Margao, Kunnamkulam, Darjeeling, Nashik, Chennai, Hosur, Haridwar, Faridabad, Mathura, Gurugram, Baddi, Calicut, Pune, Aurangabad, Nagpur, Mirzapur, Perambra, Muzaffarnagar, Meerut, Saharanpur, Bulandshahr, Ichalkaranji, Muvattupuzha, Aligarh, Anjar, Bardoli, Chittaranjan, Hyderabad, Jharia, Morbi, Nepanagar, Kollam, Tiruvalla, Kottayam, Idukki, Alappuzha, Cherthala, Alwaye, Ambattur, Ambarnath, Amritsar, Avadi, Ankleshwar, Bhadravati, Cochin, Dindigul, Ennore, Guntur, Kagithapuram, Kalpakkam, Kollegal, Kolar, Lucknow, Mysore, Nandambakkam, Nangal, Neyveli, Ooty, Perambur, Pinjore, Rupnarayanpur, Renukoot, Sindri, Singhbhum, Sirpur, Udhana, Urkunta, Worli, Zaina Kot.
We are an exporter to the following countries:
Russia, Canada, United States, China, Brazil, Australia, Argentina, Kazakhstan, Algeria, Democratic Republic of the Congo, Denmark, Saudi Arabia, Mexico, Indonesia, Sudan, Libya, Iran, Mongolia, Peru, Chad, Niger, Angola, Mali, South Africa, Colombia, Ethiopia, Bolivia, Mauritania, Egypt, Tanzania, Nigeria, Venezuela, Namibia, Mozambique, Pakistan, Turkey, Chile, Zambia, Myanmar, Afghanistan, South Sudan, France, Somalia, Central African Republic, Ukraine, Madagascar, Botswana, Kenya, Yemen, Thailand, Spain, Turkmenistan, Cameroon, Papua New Guinea, Sweden, Uzbekistan, Morocco, Iraq, Paraguay, Zimbabwe, Norway, Japan, Germany, Republic of the Congo, Finland, Vietnam, Malaysia, Côte d'Ivoire, Poland, Oman, Italy, Philippines, Ecuador, Burkina Faso, New Zealand, Gabon, United Kingdom, Guinea, Uganda, Ghana, Romania, Laos, Guyana, Belarus, Kyrgyzstan, Senegal, Syria, Cambodia, Uruguay, and Suriname.
EN 10088 SS X6Cr13 is a martensitic stainless steel grade containing approximately 12% chromium, known for its excellent hardness, wear resistance, and moderate corrosion resistance. This grade is commonly used in applications where high strength and moderate corrosion resistance are required, including cutting tools, knives, blades, and industrial components.
Ladhani Metal Corporation is a trusted manufacturer, supplier, and exporter of EN 10088 SS X6Cr13 Strip, Sheet, Plate, and Coil. Our X6Cr13 strips are available in various thicknesses, widths, and finishes to meet diverse industrial requirements, ensuring reliable performance and long service life.
Forms Available: strip, sheet, plate, coil
Chemical Composition (%):
• Carbon (C): 0.12 – 0.20
• Silicon (Si): ≤ 1.00
• Manganese (Mn): ≤ 1.00
• Phosphorus (P): ≤ 0.04
• Sulphur (S): ≤ 0.03
• Chromium (Cr): 12 – 14
Mechanical Properties:
• Tensile Strength: 500 – 700 MPa
• Yield Strength: ≥ 200 MPa
• Elongation: ≥ 12%
• Hardness (HRC): 46 – 50 (after heat treatment)
Key Features:
• High hardness and wear resistance
• Good corrosion resistance for moderate environments
• Excellent strength and dimensional stability
• Suitable for cutting and precision applications
Material Characteristics:
EN 10088 SS X6Cr13 Strip offers high hardness and excellent wear resistance after heat treatment. It has good dimensional stability and can be easily machined, ground, and polished. The martensitic structure provides toughness while maintaining moderate corrosion resistance in mildly corrosive environments. The material is suitable for forming, stamping, and precision applications where hardness and edge retention are critical.
Applications:
• Knives, blades, and cutting tools
• Industrial components and machine parts
• Springs, valves, and fasteners
• Surgical instruments and precision tools
Conclusion:
Ladhani Metal Corporation supplies high-quality EN 10088 SS X6Cr13 Strip, Sheet, Plate, and Coil with superior surface finish and precise dimensions. For material specifications, technical details, or customized requirements, please contact Ladhani Metal Corporation – your reliable partner for stainless steel solutions.
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Product name:Titanium Elliptical Dished Head
Standard: ASME VIII-I, DIN28013
Material: Titanium GR1, GR2
Size: Customized
Titanium Hemispherical Dish Head
Brand name LHTi
Product name Titanium Hemispherical Dish Head
Material Titanium & titanium alloy (Grade 1 Grade 2 Grade 7 Grade 12 etc.)
Size DN - 100mm : 6000mm (customized size avaliable)
Wall Thickness 3mm ~ 300mm (customized thickness available)
Process Type Hot pressing, cold pressing, cold spinning
Connection Type Butt-welded or threaded
Edge Type Bevel, Plain or as required
Process of depression
Once the plate is cut into a circle (using a circular cutter, laser, plasma or other methods), the resulting plate is formed under the press and will be crowned with the plate by multiple impacts on the whole surface.
In order to make different types and diameters of disc ends, a disc press must be equipped with a set of molds with different radii. The serving process is quite slow. Depending on the size and material of the plate, it usually takes several hours. This process can be automated by using a CNC manipulator. It is possible to find a press with CNC, which can handle more than 10 shafts and can run automatically for several hours.
In addition to automation, another important factor in the disk making process is speed. The two speed press can greatly increase the output.
The punch presses the workpiece continuously. This means that the structure of disc press is easily affected by material fatigue; Therefore, the life of the press designed to save cost may be very short, showing the first crack of the structure in a very short time. The press designed with HPT has better fatigue resistance. This design consists of four main parts: upper beam, lower beam and two columns. The two beams are connected with the column through the hydraulic preload pull rod. Compared with seam welding or bolts, these tie rods can better resist continuous stress, so as to provide more elasticity to the structure.
Dished multi center end
A special dished end is widely used in truck can body manufacturers: multi center dished end. These disc-shaped ends are usually made of aluminum or stainless steel and are usually made of thin plates up to 6 mm. This thickness allows the formation of multi center dished ends using a technique called hydroforming.
Distributor & High Volume Supplier
CP Titanium – Commercially Pure Titanium
Titanium CP4 – Grade 1
Commercially Pure Titanium Grade 1 is the softest titanium and has the highest ductility. It has good cold forming characteristics and provides excellent corrosion resistance. It also has excellent welding properties and high impact toughness.
Applications
Architecture, Automotive Desalination, Dimensional Stable Anodes, Medical, Marine, Processing & Chlorate Manufacturing
Standards
ASME SB-363, ASME SB-381, ASME SB-337, ASME SB-338, ASME SB-348, ASTM F-67, ASME SB-265, ASME SB-337, ASME SB-338
Forms Available
Bar, Flanges, Forgings, Sheet, Welding Wire
Titanium CP3 – Grade 2
Commercially Pure Titanium Grade 2 has moderate strength and excellent cold forming properties. It provides excellent welding properties and has excellent resistance to oxidation and corrosion.
Applications
Aerospace, Automotive, Chemical Processing & Chlorate Manufacturing, Desalination, Architecture, Hydro Carbon Processing, Marine, Medical, Power Generation
Standards
ASME SB-363, ASME SB-381, ASME SB-337, ASME SB-338, ASME SB-348, ASTM F-67, AMS 4921, ASME SB-265, AMS 4902, ASME SB-337, ASME SB-338, AMS 4942
Forms Available
Bar, Fittings, Flanges, Forgings, Pipe, Plate, Sheet, Tube, Welding Wire, Wire
Titanium CP2 – Grade 3
Commercially Pure Titanium Grade 3 is stronger and less formable than Titanium Grades 1 and 2. It is used in Aerospace and industrial applications that require moderate strength. Grade 3 titanium has excellent corrosion resistance.
Applications
Aerospace, Architecture, Automotive, Chemical Processing & Chlorate Manufacturing, Desalination, Hydro Carbon Processing, Marine, Medical, Power Generation,
Standards
ASME SB-363, ASME SB-381, ASME SB-337, ASME SB-338, ASME SB-348, ASTM F-67, AMS 4921, ASME SB-265, AMS 4902, ASME SB-337, ASME SB-338, AMS 4942
Forms Available
Bar, Fittings, Flanges, Forgings, Pipe, Plate, Sheet, Tube, Welding Wire, Wire
Titanium CP1 – Grade 4
Commercially Pure Titanium Grade 4 is stronger than CP Grades 2 & 3 – it can be cold formed, but has lower ductility. It has excellent corrosion resistance in a wide variety of environments. Grade 4 titanium is commonly used in Aerospace, Industrial and Medical applications where high strength is needed.
Applications
Aerospace, Chemical process, Industrial, Marine, Medical
Standards
ASME SB-363, ASME SB-381, ASME SB-337, ASME SB-348, ASTM F-67, AMS 4921, ASME SB-265, AMS 4901, ASME SB-338
Forms Available
Bar, Forgings, Sheet, Welding Wire, Wire
Titanium Grade 7
Titanium Grade 7 has physical and mechanical properties equivalent to CP3 titanium or Grade 2. It has excellent welding and fabrication properties and is extremely resistant to corrosion especially from reducing acids.
Applications
Chemical Processing, Desalination, Power generation
Standards
ASME SB-363, ASME SB-381, ASME SB-337, ASME SB-338, ASME SB-348, ASME SB-265, ASME SB-337, ASME SB-338,
Forms Available
Bar, Forgings, Plate, Sheet, Tube, Welding Wire, Wire
Titanium Grade 11 – CP Ti-0.15Pd
Titanium Grade 11 is highly resistant to corrosion has similar physical and mechanical properties to Titanium CP Grade 2.
Applications
Chemical processing, Desalination Power generation, Industrial
Standards
ASME SB-338
Forms Available
Tube
Titanium Based Alloys
Titanium Grade 5 – Titanium 6Al-4V
Titanium Grade 5 alloy is the most commercially available of all titanium alloys. It offers an excellent combination of high strength and toughness. Grade 5 titanium has good welding and fabrication characteristics.
Applications
Aerospace, Chemical Processing, Marine, Medical
Standards
ASME SB-265, AMS 4911, ASME SB-348, AMS 4928, AMS 4965, AMS 4967
Forms Available
Titanium Grade 6 – Titanium 5Al-2.5Sn
Titanium Grade 6 alloy offers good weldability, stability and strength at elevated temperatures.
Applications
Aerospace
Standards
ASME SB-381, AMS 4966, MIL-T-9046, MIL-T-9047, ASME SB-348, AMS 4976, AMS 4956, ASME SB-265, AMS 4910, AMS 4926
Forms Available
Bar, Forgings Plate, Sheet, Wire
Titanium Grade 9 – Titanium 3Al-2.5V
Titanium Grade 9 has medium strength that falls between Grade 4 and Grade 5. It has excellent corrosion resistance and is used in Aerospace and Industrial applications. Grade 9 Titanium can be used at higher temperatures than Grades 1 through 4. Grade 9 titanium has good cold rolling properties.
Applications
Aerospace, Automotive, Chemical processing, Consumer applications, Marine, Medical, Transportation
Standards
AMS 4943, AMS 4944, ASME SB-338
Forms Available
Bar, Forgings Plate, Sheet, Wire
Titanium Grade 12 – Ti-0.3-Mo-0.8Ni
This Titanium Grade 12 alloy is similar to Titanium Grades 2 and 3 except that Titanium Grade 12 has 0.3% molybdenum and 0.8% nickel. This offers enhanced corrosion resistance.
Applications
Chemical processing, Desalination, Power generation, Industrial
Standards
ASME SB-338
Forms Available
Tube
Titanium Grade 19 – Titanium Beta C
Titanium Grade 19 has very high strength and can be heat treated. It offers good resistance to stress and corrosion.
Applications
Aerospace Automobile
Standards
MIL-T-9046, MIL-T-9047, ASME SB-348, AMS 4957, AMS 4958, ASME SB-265
Titanium Grade 23 – Titanium 6Al-4V ELI
Titanium Grade 23 is similar to Grade 5 but has lower oxygen, nitrogen and iron. It has better ductility and fracture toughness than Titanium Grade 5.
Applications
Aerospace, Chemical Processing, Marine, Medical
Standards
AMS 4911, AMS 4928, AMS 4930, AMS 4931, AMS 4935, AMS 4965, AMS 4967, AMS 4985, AMS 4991, MIL -T-9046, MIL -T-9047, BSTA 10,11,12, BSTA 28,56,59, DIN 3.7165, AMS 4907 ELI, AMS 4930 ELI, AMS 4956 ELI, ASTM F136 ELI, UNS R56407
Forms Available
Bar, Forgings, Plate, Sheet, Welding Wire, Wire
Titanium 6Al-6V-2Sn – Titanium 6-6-2
Titanium 6-2-4-2 has excellent strength, stability, and creep resistance to temperatures as high as 550 °C.
Applications
Gas, Turbine Compressor Engine afterburner, Aerospace
Standards
AMS 4919, AMS 4952, AMS 4975, DIN 3.7164, GE B50 TF22, GE B50TF21, GE B50TF22, GE C50TF7, MIL F-83142, MIL T-9046, MIL T-9047, PWA 1220, UNS R54620
Forms Available
Bar, Plate, Sheet
Titanium 6Al-2Sn-4Zr-2Mo – Titanium 6-2-4-2
Titanium 6Al-6V-2Sn is a two-phase, Alpha Beta Alloy. It is usually used in the annealed or solution treated and aged conditions. It’s a heat treatable, high strength alloy with lower toughness and ductility than Titanium Grade 5 (6Al-4V) and it’s difficult to weld. Cold forming of Titanium 6Al-6V-2Sn is difficult because of its high strength and the large amount of spring-back that results. This grade can be welded by the inert gas shielded, fusion welding process but the heat effected area will have less ductility and toughness than the parent material. The hardness of Titanium 6-6-2 is approximately Rockwell C 36-38. This grade is primarily used for airframe and jet engine parts, rocket engine cases and ordinance components. Please call us to determine our minimum item quantity.
Applications
Airframe Components, Jet Engine Parts, Ordinance Components, Rocket Engine Cases
Standards
AMS 4981, MIL-T-9047,
Forms Available
Bar, Wire Sheet, Plate, Forgings, Fittings, Flanges, Seamless Pipe, Seamless Tube, Welded Pipe, Welded Tube
Titanium 6Al-2Sn-4Zr-6Mo – Titanium 6-2-4-6
Titanium 6Al-2Sn-4Zr-6Mo is an Alpha-Beta Alloy and it’s generally regarded as the workhorse alloy of the titanium industry. The alloy is fully heat-treatable in section sizes up to one inch and is used up to approximately 400°C (750°F). Since it is one of the most commonly used alloys (over 70% of all alloy grades melted are a sub-grade of Ti-6-4,) its uses span many aerospace engine and airframe components. Titanium 6Al-2Sn-4Zr-6Mo is also used in lots of non-aerospace applications such as marine, offshore and power generation industries. This Alpha-Beta Alloy combines good corrosion resistance and strength with weldability and fabricability. The alloy is generally available in bar form and it’s typically used in deep sour well applications. This alloy can be hot or cold formed. Please call us to determine our minimum item quantity.
Applications
Aerospace Engines, Airframe Components, Marine Applications, Offshore Applications, Power Generation Applications
Standards
AMS 4981
Forms Available
Bar, Plate, Sheet
Titanium 8Al-1Mo-1V – Titanium 8-1-1
Titanium 8Al-1Mo-1V is a near Alpha Alloy that was primarily designed for use at elevated temperatures – up to 455 degrees centigrade. It offers the highest modulus and lowest density of all Titanium alloys. It has good creep strength and it’s weldable by the inert gas fusion and resistance-welding processes. Titanium 8Al-1Mo-1V is used in the annealed condition for such applications as airframe and jet engine parts that demand high strength, superior creep resistance and a good stiffness-to-density ratio. The machinability of this grade is similar to that of Titanium 6Al-4V. Please call us to determine our minimum item quantity.
Applications
Airframe Parts, Jet Engine Parts
Standards
MIL-T-9046, MIL-T-9047, AMS 4972, AMS 4915, AMS 4973, AMS 4955, AMS 4916
Forms Available
Forgings, Bar, Sheet, Plate, Strip, Extrusions, Wire
Titanium 10V-2Fe-3Al
Titanium 10V-2Fe-3Al is a Titanium Beta Alloy. It is harder and stronger than many titanium alloys. This Titanium is a heat treatable alloy, it’s weldable and it’s easily formed. Titanium 10V-2Fe-3Al is an all Beta Alloy and is more difficult to machine than most titanium alloys. The chief problems include flank wear, spring-back and chip control. Because of these characteristics, positive rake chip grooves in combination with light hones on the cutting edge are advantageous. Please call us to determine our minimum item quantity.
Applications
Airframe Components, Compressor Blades, Disks, Wheels and Spacers
Standards
AMS 4983, AMS 4984, AMS 4986, AMS 4987
Forms Available
Bar, Forgings, Plate, Sheet, Seamless Pipe, Seamless Tube, Welded Pipe, Welded Tube, Wire
Titanium 15V-3Cr-3Sn-3Al
This Metastable-Beta Alloy is used primarily in sheet metal form. It is age-hardenable and highly cold-formable. Titanium 15V-3-3-3 is often used to replace hot-formed Titanium Grade 5 (6Al-4V) sheet. It can also be produced as foil and is an excellent alloy for castings. For aerospace applications, this grade is often specified as AMS 4914. Please call to determine the minimum item quantity.
Applications
Aerospace Tank Applications, Airframe Applications, Castings, Fasteners High Strength Hydraulic Tubing
Standards
AMS 4914, ASTM B265
Forms Available
Sheet, Foil
Titanium Alpha Alloys
Commercially pure titanium and alpha alloys of titanium are non-heat treatable and have very good welding characteristics.
Applications
Cryogenic applications, Airplane parts, Chemical processing equipment
Standards
AMS 4973, AMS 4976, AMS 4924, AMS 4972, MIL-T-9047, AMS 4910, ASTM B265, GR-6 MIL-T9046, AMS 4909, AMS 4915/4916, AMS 4966, AMS 4924, AMS 4973, AMS 4933, MIL-T-81556A A-1, MIL-T-81556A A-2, MIL-T-81556A A-4
Forms Available
Bar, Forgings, Plate, Sheet Extrusions
Titanium Beta Alloys
Titanium Beta or near Beta Alloys are:
Fully heat treatable Generally weldable
Capable of high strengths Possess good creep resistance up to intermediate temperatures
In the solution treated condition, excellent formability can be expected from Beta Alloys
Titanium Beta Alloys are ideal for sporing applications. Common Titanium Beta Alloys include:
Ti3Al8V6Cr4Mo4Zr
ASTM Grade 19
Ti-3Al-8V-6Cr-4Mo-4Zr
AMS 4983, 4984, 4987
Ti-10V-2Fe-3Al
ASTM Grade 21
Ti-15Mo-3Nb-3Al-2Si
AMS 4914
Ti-15V-3Cr-3Sn-3Al
The Metastable Titanium Beta Alloys are heat treatable by solution treatment and ageing. Fully stable beta alloys can only be annealed.
Applications
Aerospace,
Standards
AMS 4914, AMS 4983, AMS 4984, AMS 4987, ASTM Grade 19, ASTM Grade 21
Forms Available
Forgings
Titanium Alpha-Beta Alloys
Titanium Alpha Beta alloys are heat treatable and most of them are also weldable. The typical properties of Titanium Alpha Beta Alloys are:
Medium to high strength levels;
High temperature creep strength is not as less than most alpha alloys;
Limited cold forming but hot forming qualities are normally good;
The most commonly used Titanium Alpha Beta Alloy is Ti 6Al-4V. Titanium 6Al-4V has been developed in many variations of the basic formulation for numerous and widely differing applications.
Other Titanium Alpha Beta Alloys include: 6Al-4V-ELI 6Al-6V-2Sn 6Al-2Sn-4Zr-2Mo 3Al-2.5V 8Mn
Applications
Aircraft and aircraft turbine parts, Chemical processing equipment, Marine hardware, Prosthetic devices
Standards
ASME SB-265, AMS 4911, ASME SB-348, AMS 4928, AMS 4965, AMS 4967, AMS 4981, MIL-T-9047, AMS 4930, AMS 4971, AMS 4907, ASTM F 136, MIL-T-9046, AMS 4918, DMS1879/2237, AMS 4908, AMS 4943, ASTM B348, AMS 4975, MIL-T-9047 G, AMS 4928, BMS 7-348, DMS 1570, AMS 4976, AMS 4920, AMS 4934
Forms Available
Bar, Fittings, Flanges, Forgings, Pipe, Plate, Sheet, Tube, Wire
Titanium Metals
Titanium Specifications
Titanium Grades
CP4 – Grade 1
CP3- Grade 2
Titanium CP2 – Grade 3
CP1 – Grade 4
Grade 7
Grade 11 – CP Ti-0.15Pd
Grade 5 – Titanium 6Al-4V
Grade 6 – Titanium 5Al-2.5Sn
Grade 9 – Titanium 3Al-2.5V
Grade 12 – Ti-0.3-Mo-0.8Ni
Grade 19 – Titanium Beta C
Grade 23 – Titanium 6Al-4V ELI
6Al-6V-2Sn
6Al-2Sn-4Zr-2Mo
6Al-2Sn-4Zr-6Mo
8Al-1Mo-1V
10V-2Fe-3Al
15V-3Cr-3Sn-3Al
Alpha Alloys
Beta Alloys
Alpha-Beta Alloys
Titanium Dioxide TiO2
Titanium Applications
Titanium Sheets
Titanium Plates
Titanium Wire
Titanium Tubes & Tubing
Titanium Round Bar
Titanium Pipe
We stock and sell Commercially Pure Titanium and Titanium Alloys in a broad range of forms and sizes. We can deliver production quantities in 90-120 days.
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Product name:Titanium Elliptical Dished Head
Standard: ASME VIII-I, DIN28013
Material: Titanium GR1, GR2
Size: Customized
Titanium Hemispherical Dish Head
Brand name LHTi
Product name Titanium Hemispherical Dish Head
Material Titanium & titanium alloy (Grade 1 Grade 2 Grade 7 Grade 12 etc.)
Size DN - 100mm : 6000mm (customized size avaliable)
Wall Thickness 3mm ~ 300mm (customized thickness available)
Process Type Hot pressing, cold pressing, cold spinning
Connection Type Butt-welded or threaded
Edge Type Bevel, Plain or as required
Process of depression
Once the plate is cut into a circle (using a circular cutter, laser, plasma or other methods), the resulting plate is formed under the press and will be crowned with the plate by multiple impacts on the whole surface.
In order to make different types and diameters of disc ends, a disc press must be equipped with a set of molds with different radii. The serving process is quite slow. Depending on the size and material of the plate, it usually takes several hours. This process can be automated by using a CNC manipulator. It is possible to find a press with CNC, which can handle more than 10 shafts and can run automatically for several hours.
In addition to automation, another important factor in the disk making process is speed. The two speed press can greatly increase the output.
The punch presses the workpiece continuously. This means that the structure of disc press is easily affected by material fatigue; Therefore, the life of the press designed to save cost may be very short, showing the first crack of the structure in a very short time. The press designed with HPT has better fatigue resistance. This design consists of four main parts: upper beam, lower beam and two columns. The two beams are connected with the column through the hydraulic preload pull rod. Compared with seam welding or bolts, these tie rods can better resist continuous stress, so as to provide more elasticity to the structure.
Dished multi center end
A special dished end is widely used in truck can body manufacturers: multi center dished end. These disc-shaped ends are usually made of aluminum or stainless steel and are usually made of thin plates up to 6 mm. This thickness allows the formation of multi center dished ends using a technique called hydroforming.
Product name:Titanium Elliptical Dished Head
Standard: ASME VIII-I, DIN28013
Material: Titanium GR1, GR2
Size: Customized
Titanium Hemispherical Dish Head
Brand name LHTi
Product name Titanium Hemispherical Dish Head
Material Titanium & titanium alloy (Grade 1 Grade 2 Grade 7 Grade 12 etc.)
Size DN - 100mm : 6000mm (customized size avaliable)
Wall Thickness 3mm ~ 300mm (customized thickness available)
Process Type Hot pressing, cold pressing, cold spinning
Connection Type Butt-welded or threaded
Edge Type Bevel, Plain or as required
Process of depression
Once the plate is cut into a circle (using a circular cutter, laser, plasma or other methods), the resulting plate is formed under the press and will be crowned with the plate by multiple impacts on the whole surface.
In order to make different types and diameters of disc ends, a disc press must be equipped with a set of molds with different radii. The serving process is quite slow. Depending on the size and material of the plate, it usually takes several hours. This process can be automated by using a CNC manipulator. It is possible to find a press with CNC, which can handle more than 10 shafts and can run automatically for several hours.
In addition to automation, another important factor in the disk making process is speed. The two speed press can greatly increase the output.
The punch presses the workpiece continuously. This means that the structure of disc press is easily affected by material fatigue; Therefore, the life of the press designed to save cost may be very short, showing the first crack of the structure in a very short time. The press designed with HPT has better fatigue resistance. This design consists of four main parts: upper beam, lower beam and two columns. The two beams are connected with the column through the hydraulic preload pull rod. Compared with seam welding or bolts, these tie rods can better resist continuous stress, so as to provide more elasticity to the structure.
Dished multi center end
A special dished end is widely used in truck can body manufacturers: multi center dished end. These disc-shaped ends are usually made of aluminum or stainless steel and are usually made of thin plates up to 6 mm. This thickness allows the formation of multi center dished ends using a technique called hydroforming.
Ladhani Metal Corporation is a trusted manufacturer, supplier, and exporter of high-quality Titanium Grade 2 Butterfly Valves. A Titanium Gr. 2 butterfly valve is a precision-engineered flow control device designed to regulate, isolate, or throttle the flow of liquids, gases, and corrosive media in industrial systems. Made from commercially pure titanium, this valve offers exceptional corrosion resistance, excellent mechanical strength, and outstanding durability. Its lightweight design and quarter-turn operation make it ideal for critical applications in chemical, marine, and desalination industries where corrosion and reliability are key concerns.
Functions
The key functions of a Titanium Gr. 2 butterfly valve include:
• Regulating and isolating the flow of liquids, gases, and aggressive chemicals.
• Providing full shut-off with minimal torque operation.
• Ensuring smooth, low-pressure-drop flow control.
• Offering quick operation with a simple quarter-turn mechanism.
• Maintaining long-term reliability in corrosive environments.
• Supporting automation and remote actuation for modern systems.
Material Characteristics of Titanium Grade 2
Titanium Grade 2 is a commercially pure titanium known for its balance of strength, ductility, and corrosion resistance. Its key properties include:
• Excellent resistance to seawater, chlorides, and oxidizing acids.
• High strength-to-weight ratio and superior fatigue resistance.
• Outstanding biocompatibility for use in sensitive applications.
• Ability to perform well under varying temperatures and pressures.
• Non-magnetic and non-toxic characteristics, suitable for specialized industries.
Typical Composition of Titanium Grade 2:
• Titanium (Ti) – 99.2% min
• Oxygen (O) – 0.25% max
• Iron (Fe) – 0.30% max
• Carbon (C) – 0.08% max
• Nitrogen (N) – 0.03% max
• Hydrogen (H) – 0.015% max
Types of Titanium Gr. 2 Butterfly Valves
• Flanged Titanium Gr. 2 Butterfly Valve – Compact, cost-effective design for low to medium pressure applications..
• Threaded Titanium Gr. 2 Butterfly Valve – Ideal for smaller pipelines, offering quick and reliable installation.
Applications / Uses
Titanium Grade 2 butterfly valves are widely used across industries requiring superior corrosion resistance and dependable flow control:
• Chemical and petrochemical industries.
• Marine and offshore systems exposed to seawater.
• Desalination and water treatment plants.
• Power generation and energy systems.
• Pharmaceutical and biotechnology processing.
• Food and beverage industries.
• Pulp and paper production.
• Aerospace, defense, and high-performance manufacturing.
Conclusion
Titanium Grade 2 butterfly valves provide an ideal combination of corrosion resistance, strength, and operational efficiency. Their versatility and durability make them a preferred choice for harsh industrial environments and corrosive applications. Available in multiple configurations such as wafer, lug, flanged, and threaded designs, these valves ensure long service life and consistent performance. For any requirement or orders, contact Ladhani Metal Corporation, a trusted manufacturer, supplier, and exporter of premium Titanium Gr. 2 Butterfly Valves.
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Ladhani Metal Corporation is a trusted manufacturer, supplier, and exporter of high-quality threaded titanium butterfly valves. A threaded titanium butterfly valve is a compact and efficient flow control device designed to regulate, isolate, or throttle the flow of liquids, gases, and corrosive media in small to medium-sized pipelines. Featuring threaded ends, this valve allows easy installation, secure fitting, and leak-free operation without the need for flanged connections. The titanium body provides outstanding corrosion resistance, high strength-to-weight ratio, and long service life, making it ideal for applications in chemical, marine, and industrial systems.
Functions
The key functions of a threaded titanium butterfly valve include:
• Controlling and regulating the flow of liquids and gases with precision.
• Providing tight shut-off for isolation of flow in compact pipeline systems.
• Enabling quick and easy operation with a quarter-turn mechanism.
• Reducing pressure drop and maintaining smooth flow performance.
• Allowing convenient installation and removal using threaded ends.
• Ensuring long-term performance in corrosive and high-temperature environments.
Grades of Titanium Used
Threaded titanium butterfly valves are available in multiple titanium grades to meet varied industrial requirements:
• Grade 2 Titanium – Offers excellent corrosion resistance, widely used in marine and chemical applications.
• Grade 5 Titanium (Ti-6Al-4V) – Provides high strength, durability, and resistance to extreme operating conditions.
• Grade 7 Titanium – Exceptional resistance to oxidizing and reducing environments.
Types of Threaded Titanium Butterfly Valves
• Threaded End Titanium Butterfly Valve – Designed with precision threads for easy and secure connection to pipelines.
• Flanged Titanium Butterfly Valve – Suitable alternative when high-pressure and bolted connections are required.
Applications / Uses
Threaded titanium butterfly valves are used across a variety of industries where corrosion resistance, compact design, and reliability are critical:
• Chemical and petrochemical processing units.
• Desalination and seawater treatment plants.
• Power generation and energy systems.
• Marine and offshore installations.
• Pharmaceutical and biotechnology sectors.
• Food and beverage production facilities.
• Water treatment and wastewater management.
• Aerospace and defense applications.
Conclusion
Threaded titanium butterfly valves offer a reliable, compact, and corrosion-resistant solution for efficient flow control in small and medium pipeline systems. Their threaded design allows easy installation and maintenance without compromising strength or performance. Available in various titanium grades, these valves ensure durability and consistent operation in the harshest industrial conditions.
For any requirement or orders, contact Ladhani Metal Corporation, a trusted manufacturer, supplier, and exporter of premium threaded titanium butterfly valves.
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Ladhani Metal Corporation is a trusted manufacturer, supplier, and exporter of high-quality flanged titanium butterfly valves. A flanged titanium butterfly valve is a specialized flow control device designed to regulate, isolate, or throttle the flow of liquids, gases, and corrosive media in industrial pipelines. Its robust flanged connection ensures secure installation and leak-proof performance, while titanium construction provides excellent corrosion resistance, lightweight strength, and long service life. These valves are ideal for high-pressure and demanding applications in chemical, marine, and desalination industries.
Functions
The key functions of a flanged titanium butterfly valve include:
• Regulating the flow of liquids and gases efficiently.
• Providing full shut-off to stop flow completely.
• Throttling flow for precise control of process systems.
• Ensuring minimal pressure drop across the valve when fully open.
• Allowing easy automation and remote operation.
• Withstanding harsh chemicals, seawater, and high-pressure conditions.
Grades
Flanged titanium butterfly valves are manufactured in various titanium grades depending on application requirements:
• Grade 2 Titanium – Excellent corrosion resistance, ideal for chemical and marine applications.
• Grade 5 Titanium (Ti-6Al-4V) – High strength and durability for high-pressure and demanding environments.
• Grade 7 Titanium – Superior resistance to oxidizing and reducing conditions.
Types of Flanged Titanium Butterfly Valves
• Flanged Titanium Butterfly Valve – Designed with flanged connections available in Class 150, Class 300, and Class 600, ensuring secure, leak-proof operation for various pressure systems.
• Threaded Titanium Butterfly Valve – Optionally combined with flanged ends for small-diameter pipelines.
Applications / Uses
Flanged titanium butterfly valves are widely used across industries that demand corrosion resistance and high-pressure performance:
• Chemical and petrochemical plants for handling aggressive chemicals.
• Desalination and seawater treatment systems.
• Power generation and energy industries.
• Marine and offshore applications.
• Pharmaceutical and biotechnology processing.
• Food and beverage industries.
• Pulp and paper manufacturing.
• Aerospace and defense systems.
Conclusion
Flanged titanium butterfly valves combine the strength and corrosion resistance of titanium with the secure sealing and durability of flanged connections. Their adaptability to various pipeline designs and pressure classes makes them suitable for demanding industrial applications. For any requirement or orders, contact Ladhani Metal Corporation, a trusted manufacturer, supplier, and exporter of premium flanged titanium butterfly valves.
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