Production method of cobalt-chromium-alloy-based spherical niobium carbide powder
A technology of cobalt-chromium alloy and production method, which is applied to metal material coating process, coating, melt spraying and other directions, can solve the problem that the density difference between cobalt-chromium alloy-based spherical niobium carbide powder, tungsten carbide and nickel-based alloy is not found. Excessive size, affecting the service life and other problems, to achieve the effect of good commercial value, good liquidity and easy operation
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preparation example Construction
[0026] The preparation method of spherical niobium carbide comprises the following steps:
[0027] Step 1, pretreat the non-spherical niobium carbide powder to disperse the niobium carbide evenly: use a ball mill for ball milling at a speed of 50-100r / min for 12-24h;
[0028] Step 2, put the pretreated niobium carbide powder into the induction plasma spheroidization device, turn on the plasma, and set the operating parameters of the plasma: the flow rate of the argon shielding gas is 70-90 slpm (stard liter per minute, standard liter per minute Minute flow value), the flow rate of argon gas center is 20-40slpm, the flow rate of hydrogen gas is 18-22slpm, the conductivity and thermal conductivity are better under the flow rate of hydrogen gas;
[0029] Step 3, open the powder feeding valve, adjust the argon carrier gas flow rate to 3-8slpm, and adjust the powder feeding rate to 100-120g / min;
[0030] Step 4, collecting spherical niobium carbide powder.
[0031] It is measured...
Embodiment 1
[0033] (1) Weigh cobalt-chromium alloy raw materials with a particle size of 45-150 μm, with a cobalt content of 72%, a chromium content of 28%, and spherical niobium carbide raw materials with a particle size of 45-150 μm, with a niobium carbide content greater than 99%; dry for 2 hours at a temperature of 130°C .
[0034] (2) According to the weight ratio of 50% of the cobalt-chromium alloy content and 50% of the spherical niobium carbide content, the three-dimensional powder mixer is added, and the speed of the three-dimensional powder mixer is 15r / min, and the time is 90min.
[0035] The resulting powder was collected to obtain cobalt-chromium alloy-based spherical niobium carbide powder.
[0036] The obtained cobalt-chromium alloy-based spherical niobium carbide has a loose packing density of 4.97 (g / cm 3 ), the Hall flow rate is 17.7 (s / 50g).
Embodiment 2
[0038] (1) Cobalt-chromium alloy with a particle size of 45-150 μm, with a cobalt content of 76%, a chromium content of 24%, spherical niobium carbide with a particle size of 45-150 μm, and a niobium carbide content greater than 99%, and the raw cobalt-chromium alloy and spherical niobium carbide are dried separately 4h, temperature 110°C.
[0039] (2) According to the weight ratio of 65% of the cobalt-chromium alloy content and 35% of the spherical niobium carbide content, add the three-dimensional powder mixer, the three-dimensional powder mixer speed is 20r / min, and the time is 120min.
[0040] (3) Collect the obtained powder to obtain cobalt-chromium alloy-based spherical niobium carbide powder.
[0041] The obtained cobalt-chromium alloy-based spherical niobium carbide has a loose packing density of 5.16 (g / cm 3 ), the Hall flow rate is 17.1 (s / 50g).
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