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Forged discs are used in various industries, including aerospace, oil and gas, power generation, and industrial machinery. They can be machined further and used as base material for producing various components, such as flanges, gears, valve bodies, and rotors. The use of forged discs provides superior strength and reliability compared to other manufacturing methods, making them suitable for high-stress and critical applications.
TA1 belongs to α-type titanium alloy. It is industrial pure titanium alloy. TA1 has high strength, low density, excellent corrosion resistance and toughness, and its tensile strength is between 350-550MPa. It is very plastic and easy to process and weld.
Chemical Composition(%)
Ti | Fe | Si | C | N | H | O |
91.49 | 0.15 | 0.1 | 0.05 | 0.03 | 0.015 | 0.15 |
Mechanical Property(≧)
Tensile Strength (σb/MPa) | Yield Strength (σs/MPa) | Elongation (δ5/%) | Reduction ψ (%) |
343 | 275 | 25 | 50 |
Forged discs are used in various industries, including aerospace, oil and gas, power generation, and industrial machinery. They can be machined further and used as base material for producing various components, such as flanges, gears, valve bodies, and rotors. The use of forged discs provides superior strength and reliability compared to other manufacturing methods, making them suitable for high-stress and critical applications.
TA1 belongs to α-type titanium alloy. It is industrial pure titanium alloy. TA1 has high strength, low density, excellent corrosion resistance and toughness, and its tensile strength is between 350-550MPa. It is very plastic and easy to process and weld.
Chemical Composition(%)
Ti | Fe | Si | C | N | H | O |
91.49 | 0.15 | 0.1 | 0.05 | 0.03 | 0.015 | 0.15 |
Mechanical Property(≧)
Tensile Strength (σb/MPa) | Yield Strength (σs/MPa) | Elongation (δ5/%) | Reduction ψ (%) |
343 | 275 | 25 | 50 |