A method for promoting green body densification by hydrogen absorption and expansion of titanium-containing material
A densification and material technology, applied in the densification of metal matrix composites, alloys, and metals, can solve the problems of high cost and achieve the effect of low production cost, high efficiency and uniform structure
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Embodiment 1
[0065] 1. Put a titanium product with a density of 83% (industrial pure titanium, titanium content > 98%) into a stainless steel mold. The fit gap between the product and the mold is less than 0.1 mm, and the mold is packaged and fastened.
[0066] 2. Put the assembled mold into an atmosphere sintering furnace, heat it to 800°C under an argon atmosphere, and keep it warm for one hour; inject hydrogen (hydrogen gas flow rate is 1L / min), and cool down to 600°C at a rate of 1°C / min. Keep feeding hydrogen and keep it warm for 4 hours, and the furnace is cold.
[0067] 3. Turn to vacuum sintering furnace, vacuumize (vacuum degree is less than 10 -3 Pa), raise the temperature to 650°C, keep the furnace for 2 hours, and then stop the furnace for cooling.
[0068] 4. Open the vacuum sintering furnace, take out and open the mold, and obtain a titanium alloy product with a density greater than 91%.
Embodiment 2
[0072] 1. Put the titanium alloy product with a density of 93% into a stainless steel mold, the fit gap between the product and the mold is less than 0.1 mm, and then seal and fasten the mold.
[0073] 2. Put the assembled mold into an atmosphere sintering furnace, heat it to 800°C under an argon atmosphere, and keep it warm for 1 hour; inject hydrogen (hydrogen gas flow rate is 1L / min), and cool down to 650°C at a rate of 0.5°C / min. Keep feeding hydrogen and keep it warm for 4 hours, and the furnace is cold.
[0074] 3. Put the mold into the vacuum sintering furnace, vacuumize (vacuum degree is less than 10 -3 Pa), raise the temperature to 800°C, keep the furnace for 2 hours, and then stop the furnace for cooling.
[0075] 4. Open the vacuum sintering furnace, take out and open the mold, and obtain a titanium alloy product with a density greater than 99.5%.
Embodiment 3
[0079] 1. Put a stainless steel mold into a titanium alloy with a composition of Ti-6Al-4V and a density of 88%, and seal and fasten the mold.
[0080] 2. Put the assembled mold into the atmosphere sintering furnace, heat it up to 800°C in an argon atmosphere, and keep it warm for one hour; change the hydrogen gas (hydrogen flow rate is 1L / min), cool down to 650°C at a rate of 2°C / min, and keep Introduce hydrogen and keep warm for 4 hours, and the furnace is cooled.
[0081] 3. Turn to vacuum sintering furnace, vacuumize (vacuum degree is less than 10 -3 Pa), raise the temperature to 750°C, keep the furnace for 2 hours, and then stop the furnace for cooling.
[0082] 4. Open the vacuum sintering furnace, take out and open the mold, and obtain a titanium alloy product with a density greater than 95%.
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