Preparation method of medical porous titanium and titanium alloy
A technology of titanium alloy and porous titanium is applied in the field of preparation of medical porous titanium and titanium alloy, and achieves the effects of excellent mechanical properties, high efficiency and low sintering temperature
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Embodiment 1
[0019] Example 1: Preparation of medical porous pure titanium
[0020] (1) Powder blending: Titanium powder with a purity of 99.7% and ammonium bicarbonate with a mass ratio of 95% are blended at a mass ratio of 10:7, wherein the particle size of the titanium powder is 75 mesh, and the ammonium bicarbonate is 20-30 mesh;
[0021] (2) Ball milling: Put the prepared powder into a stainless steel ball mill tank for ballless powder mixing, wherein the ball milling speed is 100 r / min, and the ball milling time is 2 hours;
[0022] (3) Compact: the ball-milled powder is molded under a pressure of 300MPa to make a Φ11.5×22 billet;
[0023] (4) Furnace loading: Place the obtained billet and 100g of SiC microwave-assisted heating material in a polycrystalline mullite fiber insulation bucket, and then put the insulation bucket into the microwave sintering furnace;
[0024] (5) Microwave sintering: After the vacuum degree in the microwave sintering furnace cavity is evacuated to less t...
Embodiment 2
[0026] Example 2: Preparation of medical porous pure titanium
[0027] (1) Powder blending: titanium powder with a purity of 99.7% and titanium hydride powder with a purity of 99.7% are batched according to a mass ratio of 10: 7, and the particle diameters of the titanium powder and titanium hydride powder are both 325 mesh;
[0028] (2) Ball milling: Put the prepared powder into a stainless steel ball mill tank for ballless powder mixing, where the ball milling speed is 500 r / min, and the ball milling time is 8 hours;
[0029] (3) Compact: the ball-milled powder is molded under a pressure of 300MPa to make a Φ11.5×22 billet;
[0030] (4) Furnace loading: Place the obtained billet and 200g of SiC microwave-assisted heating material in a polycrystalline mullite fiber insulation bucket, and then put the insulation bucket into the microwave sintering furnace;
[0031] (5) Microwave sintering: After the vacuum degree in the furnace cavity is evacuated to less than 0.1 Pa, argon ...
Embodiment 3
[0033] Example 3: Preparation of medical porous Ti-6Al-4V alloy
[0034] (1) Mixing powder: titanium powder with a purity of 99.7%, aluminum powder with a purity of 99.8% and vanadium with a purity of 99.7%, and the weight percentage of titanium, aluminum and vanadium is 45:3:2, and the purity is 95%. 1. A urea pore-forming agent with a mass percentage of 25%, wherein the particle size of the titanium powder is 325 mesh, the aluminum powder is 500 mesh, and the vanadium powder is 700 mesh, and the particle size of the urea is 35-40 mesh;
[0035] (2) Ball milling: Put the prepared powder into a stainless steel ball milling tank for ball milling, wherein the ball milling speed is 200 r / min, and the ball milling time is 2 hours;
[0036] (3) Compact: the ball-milled powder is molded under a pressure of 300 MPa to make a Φ11.5×22 billet;
[0037] (4) Furnace loading: Place the obtained billet and 300g of SiC microwave-assisted heating material in a polycrystalline mullite fiber...
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