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Titanium Flange
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ASME B16.5 Gr.5 Ti Welded Neck Flange Class 600

ASME B16.5 Gr.5 Ti Welded Neck Flange Class 600

Brand Name: LHTi
MOQ: 100 pieces
Price: negotiable
Payment Terms: L/C,D/A,D/P,T/T,Western Union,MoneyGram
Supply Ability: 200 Ton/Tons Per Month
Detail Information
Place of Origin:
Baoji, China
Certification:
ISO9001,CE,etc
Corrosion Resistance:
Excellent
Flange Standards:
ANSI, DIN, JIS
Surface:
FF, RF, TG, RJ, Etc
Press:
Class 600/ CL600
Processing Method:
Forging, Then Cnc Machining
Constitute:
A Pair Of Flanges, A Gasket
Quality Test:
Ultrasonic Testing
Sizes:
DN10-1000
Packaging Details:
Plywood case or pallet, or as per your requirement
Supply Ability:
200 Ton/Tons Per Month
Highlight:

Gr5 Titanium Welded Neck Flange

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Aerospace Industry Titanium Welded Neck Flange

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ASME Titanium Welded Neck Flange

Product Description
ASME B16.5 Gr.5 Ti Welded Neck Flange Class 600
Application of Ti6Al4V GR2 and GR5 Titanium Alloy Weld Neck Flanges in Aerospace
Titanium alloys are essential materials in the aerospace industry, valued for their exceptional strength-to-weight ratio, corrosion resistance, and high-temperature stability. Ti6Al4V (Titanium 6Al-4V) is the most widely used titanium alloy, containing 6% aluminum and 4% vanadium. This composition provides high strength, excellent fatigue performance, and superior corrosion resistance. GR2 and GR5 are the most common grades, with GR2 being commercially pure titanium and GR5 representing the standard titanium alloy formulation.
Ti6Al4V GR2 and GR5 Titanium Alloy Specifications
Alloy Type Composition Characteristics Applications
Ti6Al4V (GR5) 90% Titanium, 6% Aluminum, 4% Vanadium High strength, excellent corrosion resistance, superior fatigue performance, suitable for high-temperature and high-pressure environments Aircraft engines, airframe structures, rocket components
GR2 (CP Titanium) 99% Titanium (with trace oxygen, iron, carbon) Excellent corrosion resistance with lower strength, ideal for high-corrosion resistance applications Heat exchangers, piping systems, fuel tanks
ASME B16.5 Gr.5 Ti Welded Neck Flange Class 600 0
Weld Neck Flange Design and Aerospace Function
Weld neck flanges feature an extended neck design specifically engineered for welding to pipes and equipment. This configuration distributes pressure evenly throughout the connection, minimizing leakage risks and failure points caused by pressure concentration. The design ensures exceptional stability and durability, making weld neck flanges particularly suitable for high-pressure, high-temperature, and high-vibration aerospace environments. These components are extensively used in critical aircraft systems including fuel delivery, cooling circuits, and exhaust management.
Key Advantages of Titanium Alloy Weld Neck Flanges
  • High Strength and Lightweight: Ti6Al4V GR5 titanium alloy provides an exceptional strength-to-weight ratio, essential for aerospace components requiring both structural integrity and weight reduction.
  • Outstanding Corrosion Resistance: Titanium alloys resist degradation from most acids, bases, and seawater, ensuring long-term reliability in harsh environments.
  • Superior Weldability: Both Ti6Al4V and GR2 titanium alloys offer excellent welding characteristics, enabling high-quality, reliable joint connections.
  • High-Temperature Stability: Ti6Al4V alloy maintains excellent mechanical properties at temperatures up to 800°C, suitable for demanding high-temperature aerospace applications.
Aerospace Applications
Application Area Description
Aerospace Engine Systems Titanium alloy weld neck flanges withstand extreme temperatures and pressures in engine exhaust systems, ensuring structural strength and operational stability.
Fuel and Cooling Systems The corrosion and oxidation resistance of titanium alloys prevents leakage and maintains system integrity in fuel delivery and thermal management systems.
Spacecraft Structures In spacecraft applications, titanium weld neck flanges connect various systems and piping networks, enduring high strength requirements, low temperatures, and extreme pressure conditions to ensure vehicle performance and safety.
Conclusion
Ti6Al4V GR2 and GR5 titanium alloy weld neck flanges are critical components in aerospace engineering. Their exceptional strength characteristics, corrosion resistance, welding compatibility, and thermal stability make them indispensable for aerospace engines, fuel systems, cooling circuits, and spacecraft structures. As aerospace technology advances and demands for material performance and connection reliability increase, Ti6Al4V titanium alloy weld neck flanges will continue to support the industry's pursuit of higher performance standards and enhanced safety protocols.