Titanium Flange Ti F2 Welding Neck Flange ASTM B381 ANSI B16.530
Description
Titanium flanges are precision-engineered components made from non-ferrous titanium or titanium alloys. They are mainly used to connect pipes, valves, pumps, and other equipment in piping systems, ensuring secure sealing and reliable mechanical strength.
Due to titanium’s excellent corrosion resistance, low density, and high strength-to-weight ratio, titanium flanges are widely used in industries such as chemical processing, petrochemical, marine engineering, and aerospace.
The smooth surface of titanium flanges also prevents contamination, making them ideal for clean and hygienic applications.
Specification
| Product Name | Titanium Flange |
|---|---|
| Material | Pure Titanium and Titanium Alloy (Gr1, Gr2, Gr5, Gr7, Gr9, Gr12, etc.) Also available in Pure Nickel, Inconel Alloy, Zirconium & Zirconium Alloy, Monel, Hastelloy, Incoloy Alloy |
| Standards | ANSI B16.5 / ASTM B16.5 / ASME B16.47 / JIS B2220 / DIN 2627–2628 / AWWA / ASTM A182 / ASME SA182 |
| Dimension Range | 1/2" ~ 60" NB (NPS 1/2 – NPS 24, DN10 – DN2000) |
| Pressure Class | PN0.25 ~ 32 MPa (DIN: PN6, PN10, PN16, PN25 through PN250) Class 150#, 250#, 300#, 400#, 500#, 600#, 900#, 1500#, 2500# |
| Flange Surface Types | FF (Flat Face), RF (Raised Face), TG (Tongue & Groove), RJ (Ring Joint), MFM (Male & Female Face) |
| Special Features | Excellent corrosion resistance, high-pressure resistance, and long service life |
| Applications | Chemical, Petroleum, Marine, Mechanical, Medical, Aerospace, and Industrial systems |
Advantages
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Low density and high specific strength – Lightweight yet durable
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Excellent corrosion resistance – Resistant to acids, alkalis, and seawater
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Outstanding heat resistance – Stable performance at high temperatures
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Excellent low-temperature toughness – Maintains strength in cryogenic conditions
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Non-magnetic and non-toxic – Suitable for medical and electronic use
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Good thermal conductivity and oxidation resistance
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Low elastic modulus – Provides flexibility in dynamic systems
Applications
Mechanical and process equipment
Electroplating and chemical treatment systems
Medical and pharmaceutical equipment
Precision components manufacturing
Aerospace: compressor parts, structural assemblies
Defence: rockets, missiles, and high-speed aircraft structures
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