Method for preparing titanium alloy blade by investment casting method
An investment casting, titanium alloy technology, applied in blade support elements, mechanical equipment, engine elements, etc., can solve the problems of short service life, low plasticity and toughness, high possibility of metallurgical defects, and achieve simple process, batch processing, etc. The effect of improved secondary stability and easy control of tissue uniformity
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Embodiment 1
[0020] A method for preparing titanium alloy blades by investment casting, characterized in that: the mass percent content of each component of the alloy includes: Al7.5%, Mo1.5%, V0.55%, Fe0.6%, Si0.35%, Cr0.15%, Nb0.6%, Sn0.8%, In0.06%, Cu0.035%, Ce0.06%, Y0.015%, Mn0.2%, the rest is titanium and unavoidable non-metallic inclusions,
[0021] The preparation method of precision casting titanium alloy blades includes the following steps: preparing alloys according to the above proportions, melting and pouring of alloy materials: melting temperature: 1790°C, pouring temperature: 1710°C; finally demolding, and heat treatment of the obtained blades: firstly, the blades Heating to 720°C for quenching, and then undergoing three aging treatments. The first aging treatment is at a controlled temperature of 460°C, kept for 2.5 hours, stirred and cooled by an argon fan under vacuum conditions, and the second aging treatment is in an air box furnace. The control temperature is 410°C, h...
Embodiment 2
[0024] A method for preparing titanium alloy blades by investment casting, characterized in that: the mass percent content of each component of the alloy includes: Al7.2%, Mo1.2%, V0.52%, Fe0.52%, Si0.32%, Cr0.12%, Nb0.52%, Sn0.72%, In0.052%, Cu0.032%, Ce0.052%, Y0.012%, Mn0.12%, the rest is titanium and unavoidable non-metallic inclusions,
[0025] The preparation method of precision casting titanium alloy blades includes the following steps: preparing alloys according to the above proportions, melting and pouring of alloy materials: melting temperature: 1780°C, pouring temperature is 1700°C; finally demolding, and heat treatment of the obtained blades: firstly, the blades Heating to 700°C for quenching, and then undergoing three aging treatments, the first aging treatment is at a controlled temperature of 460°C, kept for 2.5 hours, stirred and cooled by an argon fan under vacuum conditions, the second aging treatment is in an air box furnace, The control temperature is 410°...
Embodiment 3
[0028] A method for preparing titanium alloy blades by investment casting, characterized in that: the mass percent content of each component of the alloy includes: Al7.8%, Mo1.8%, V0.58%, Fe0.58%, Si0.38%, Cr0.18%, Nb0.58%, Sn0.78%, In0.058%, Cu0.038%, Ce0.058%, Y0.018%, Mn0.18%, the balance is titanium and Inevitable non-metallic inclusions,
[0029] The preparation method of precision casting titanium alloy blades includes the following steps: preparing alloys according to the above proportions, melting and pouring of alloy materials: melting temperature: 1800°C, pouring temperature: 1730°C; finally demoulding, and heat treatment of the obtained blades: firstly, the blades Heating to 740°C for quenching, and then undergoing three aging treatments, the first aging treatment is at a controlled temperature of 460°C, heat preservation for 3 hours, stirring and cooling with an argon fan under vacuum conditions, the second aging treatment is in an air box furnace, controlled The te...
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