A kind of preparation method of high temperature, high thermal stability, high creep resistance titanium alloy bar
A high thermal stability, titanium alloy technology, applied in the field of titanium-based alloys, can solve the problems affecting the uniformity of the forging structure and the stability of mechanical properties, the uniformity of the bar structure cannot be guaranteed, and the deformation resistance is large, so as to avoid uneven deformation. , to avoid technical risks, the effect of good creep performance
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Embodiment 1
[0022] 1) Ingot smelting: Al-Mo, Ti-Sn, Al-Si, Al-Nb and Al-Ta master alloys, sponge Zr, pure Al, etc. are made into alloy bags, and then pressed with 0-grade sponge titanium to form electrodes. After vacuum plasma welding and three vacuum consumable electric arc furnace smelting, a Ti55 titanium alloy ingot with a diameter of 710mm was obtained; the weight percentage of each component of the Ti titanium alloy ingot is Al: 5.51%, Sn: 3.55%, Zr: 3.10% , Mo: 1.01%, Si: 0.28%, Nb: 0.42%, Ta: 0.51%, H: 0.009%, O: 0.12%, N: 0.013%, the balance is Ti, the phase transition temperature T of the ingot β 1000°C
[0023] 2) Using a resistance furnace, heat the Ti60 titanium alloy ingot obtained in step 1) to 1200°C, and then repeatedly upsetting and elongating the forging with a hydraulic press for 2 times. Not less than 4, the final forging temperature is not lower than 850°C;
[0024] 3) Using a resistance furnace, heat the forging billet obtained in step 2) to 1100°C, and then repea...
Embodiment 2
[0029] 1) ingot smelting: the preparation method of ingot is the same as embodiment 1, and difference is that the diameter of Ti55 titanium alloy ingot is 540mm, and the phase transition temperature T of ingot is β is 994°C;
[0030] 2) Using a resistance furnace, heat the Ti55 titanium alloy ingot obtained in step 1) to 1150°C, and then repeatedly upsetting and elongating the forging with a hydraulic press for 2 times. Not less than 4, the final forging temperature is not lower than 850°C;
[0031] 3) Using a resistance furnace, heat the forging billet obtained in step 2) to 1100°C, and then repeatedly upsetting and elongating the forging billet with a hydraulic press for 3 times. The forging ratio of each billet is not less than 2.6, and the total forging ratio is not less than 6 , the final forging temperature is not lower than 850°C; the forging billet is cooled by water cooling after the last forging is completed;
[0032] 4) Using a resistance furnace, heat the forged ...
Embodiment 3
[0036] 1) ingot smelting: the preparation method of ingot is the same as embodiment 1, and difference is that the diameter of Ti55 titanium alloy ingot is 380mm, and the phase transition temperature T of ingot is β is 996°C;
[0037] 2) Using a resistance furnace, heat the Ti55 titanium alloy ingot obtained in step 1) to 1150°C, and then repeatedly upsetting and elongating the forging with a hydraulic press for 2 times. Not less than 4, the final forging temperature is not lower than 850°C;
[0038] 3) Using a resistance furnace, heat the forging blank obtained in step 2) to 1080°C, then repeatedly upsetting and elongating the forging with a hydraulic press for 3 times, the forging ratio of the forging blank per firing is not less than 2.6, and the total forging ratio is not less than 6 , the final forging temperature is not lower than 850°C; the forging billet is cooled by water cooling after the last forging is completed;
[0039] 4) Using a resistance furnace, heat the fo...
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