A kind of nanoparticle reinforced ztc4 titanium alloy and preparation method thereof
A titanium alloy and nanotechnology, applied in the field of nanoparticle-reinforced ZTC4 titanium alloy and its preparation, has achieved great national economic significance and the effect of simple and easy method
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Embodiment 1
[0031] This embodiment provides a kind of ZTC4 titanium alloy, and its preparation method comprises the following steps:
[0032] S1, carbon nanotubes and titanium powder with a particle size of 300 mesh are mixed according to a molar ratio of 1:1 to obtain a mixture; then, the mixture and a particle diameter of 500 mesh aluminum powder are placed in a mass ratio of 30:70 Mix in a ball mill at a speed of 50 rpm for 24 hours to obtain alloy powder.
[0033] S2. Put the above alloy powder in aluminum foil, press it into a cylindrical compact with a diameter of 25mm and a height of 35mm, then put the compact into a graphite mold, and place the graphite mold in a vacuum heating furnace at 30°C / min The heating rate is heated to 900°C for combustion synthesis, and after 10 minutes of heat preservation, it is cooled to room temperature with the furnace to obtain an aluminum-based master alloy containing nano-TiC particles, wherein the particle size of the nano-TiC particles is 60-120...
Embodiment 2
[0040] This embodiment provides a kind of ZTC4 titanium alloy, and its preparation method comprises the following steps:
[0041]S1, carbon nanotubes and titanium powder with a particle size of 300 mesh are mixed according to a molar ratio of 1:1 to obtain a mixture; then, the mixture and a particle diameter of 500 mesh aluminum powder are placed in a mass ratio of 30:70 Mix in a ball mill at a speed of 50 rpm for 24 hours to obtain alloy powder.
[0042] S2. Put the above alloy powder in aluminum foil, press it into a cylindrical compact with a diameter of 25mm and a height of 35mm, then put the compact into a graphite mold, and place the graphite mold in a vacuum heating furnace at 30°C / min The heating rate is heated to 900°C for combustion synthesis, and after 10 minutes of heat preservation, it is cooled to room temperature with the furnace to obtain an aluminum-based master alloy containing nano-TiC particles, wherein the particle size of the nano-TiC particles is 60-120n...
Embodiment 3
[0049] This embodiment provides a kind of ZTC4 titanium alloy, and its preparation method comprises the following steps:
[0050] S1, carbon nanotubes and titanium powder with a particle size of 300 mesh are mixed according to a molar ratio of 1:1 to obtain a mixture; then, the mixture and a particle diameter of 500 mesh aluminum powder are placed in a mass ratio of 30:70 Mix in a ball mill at a speed of 50 rpm for 24 hours to obtain alloy powder.
[0051] S2. Put the above alloy powder in aluminum foil, press it into a cylindrical compact with a diameter of 25mm and a height of 35mm, then put the compact into a graphite mold, and place the graphite mold in a vacuum heating furnace at 30°C / min The heating rate is heated to 900°C for combustion synthesis, and after 10 minutes of heat preservation, it is cooled to room temperature with the furnace to obtain an aluminum-based master alloy containing nano-TiC particles, wherein the particle size of the nano-TiC particles is 60-120...
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