Method for preparing hydrogenated titanium alloy powder
A titanium alloy and powder technology is applied in the field of preparation of titanium hydride alloy powder, which can solve the problems of small alloy structure, low technical maturity, and difficulty in realizing near-final forming of complex components, and achieves fine powder particle size and wide application. The effect of market and important application value
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Embodiment 1
[0015] The steps and technological process of this embodiment are as follows:
[0016] 1. Bake the TC4 titanium alloy blocks at 100°C for 2 hours after sand blasting, pickling and cleaning.
[0017] 2. Put the cleaned titanium alloy fast material into the hydrogenation furnace, evacuate to 0.1Pa, then heat and inject hydrogen at a temperature of 450°C for 8 hours, the hydrogen pressure in the furnace is 100000Pa, and cool down to 50°C with the furnace baked;
[0018] Step 2: Crushing the hydrogen-treated titanium alloy masterbatch in an argon-protected glove box through a pulverizer to obtain a powder with an average particle size of 0.5 mm;
[0019] Step 3: Put the crushed titanium alloy particles into a fluidized bed jet mill for grinding, the grinding pressure is 0.5 MPa, and the speed of the separator is 10000 rpm;
[0020] Step 4: Collect titanium hydride alloy powder.
[0021] The particle size of the collected powder was detected, and the average particle size was 1....
Embodiment 2
[0023] The steps and technological process of this embodiment are as follows:
[0024] 1. Bake the TC4 titanium alloy blocks at 100°C for 2 hours after sand blasting, pickling and cleaning.
[0025] 2. Put the cleaned titanium alloy fast material into the hydrogenation furnace, evacuate to 0.1Pa, then heat and feed hydrogen at a temperature of 850°C for 3.5 hours, the hydrogen pressure in the furnace is 1Pa, and cool to 100°C with the furnace baked;
[0026] Step 2: smashing the hydrogen-treated titanium alloy masterbatch in an argon-protected glove box to obtain a powder with an average particle size of 5 mm;
[0027] Step 3: Put the crushed titanium alloy particles into a fluidized bed jet mill for grinding, the grinding pressure is 0.9 MPa, and the speed of the separator is 1000 rpm;
[0028] Step 4: Collect titanium hydride alloy powder.
[0029] The particle size of the collected powder was detected, and the average particle size was 85.6 microns.
Embodiment 3
[0031] The steps and technological process of this embodiment are as follows:
[0032] 1. Bake the TC4 titanium alloy blocks at 80°C for 3 hours after sand blasting, pickling, and cleaning.
[0033] 2. Put the cleaned titanium alloy fast material into the hydrogenation furnace, evacuate to 0.1Pa, then heat and feed hydrogen at a temperature of 550°C for 5 hours, the hydrogen pressure in the furnace is 1Pa, and cool down to 80°C with the furnace baked;
[0034] Step 2: smashing the hydrogen-treated titanium alloy masterbatch in an argon-protected glove box to obtain a powder with an average particle size of 5 mm;
[0035] Step 3: Put the crushed titanium alloy particles into a fluidized bed jet mill for grinding, the grinding pressure is 0.7MPa, and the speed of the separator is 7000 rpm;
[0036] Step 4: Collect titanium hydride alloy powder.
[0037] The particle size of the collected powder was detected, and the average particle size was 10.5 microns.
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