Preparation method of tungsten carbide/cobalt system porous material
A porous material, tungsten carbide technology, applied in the field of preparation of tungsten carbide/cobalt based porous materials, can solve the problems of uncontrollable pores, increased production costs, complex porous cemented carbide process, etc., and achieve the effect of controllable pores
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Embodiment 1
[0022] Weigh tungsten oxide powder, cobalt oxide powder and carbon powder, and make ingredients according to the experimental alloy composition of WC-10Co. The mixture is ball milled on a ball mill at 350 rpm, and the ball milling medium is wet-mixed with alcohol, and the mixture after ball milling is dried; the dried powder is reduced in hydrogen at 1100°C for 3 hours; the WC-10Co composite powder obtained after reduction Mixed with gasoline paraffin solution for granulation, and dried; then the granulated composite powder was molded into compact under the pressure of 300MPa. The compact was degreased in a hydrogen furnace at 380°C. After degreasing, the compact is sintered in a high-temperature and low-pressure sintering furnace at a sintering temperature of 1400 °C for 3 hours and a sintering pressure of 5 MPa. The porosity of the prepared WC-10Co porous material of d25mm×3mm is 45%, and the average pore diameter is 1.9um.
Embodiment 2
[0024] Weigh tungsten oxide powder, cobalt oxide powder and carbon powder, and make ingredients according to the experimental alloy composition of WC-5Co. The mixture is ball-milled on a ball mill at 150 rpm, the ball-milling medium is wet-mixed with alcohol, and the ball-milled mixture is dried. The dried powder was reduced with hydrogen at 800°C for 10 h. The WC-5Co composite powder obtained after reduction was mixed with gasoline paraffin solution for granulation and dried. Then the granulated composite powder is molded into compact under the pressure of 200MPa. The compact was degreased in a hydrogen furnace at 350°C. After degreasing, the compact is sintered in a high-temperature and low-pressure sintering furnace at a sintering temperature of 1300°C for 6 hours and a sintering pressure of 3MPa. The porosity of the prepared WC-5Co porous material of d35mm×5mm is 53%, and the average pore diameter is 3.1um.
Embodiment 3
[0026] Weigh tungsten oxide powder, cobalt oxide powder and carbon powder, and make ingredients according to the experimental alloy composition of WC-20Co. The mixture is ball-milled on a ball mill at 650 rpm, the ball-milling medium is wet-mixed with alcohol, and the ball-milled mixture is dried. The dried powder was reduced with hydrogen at 950°C for 6h. The WC-20Co composite powder obtained after reduction is mixed with gasoline paraffin solution for granulation and dried. Then the granulated composite powder was molded into compact under the pressure of 400MPa. The compact was degreased at 420°C in a hydrogen furnace. After degreasing, the compact is sintered in a high-temperature and low-pressure sintering furnace at a sintering temperature of 1500°C for 1 hour and a sintering pressure of 1 MPa. The porosity of the prepared WC-20Co porous material of d20mm×2mm is 61%, and the average pore diameter is 4.2um.
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