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Characterization of Cobalt Based CoCrMo Alloy Fabricated by Powder Metallurgy Route

机译:粉末冶金法制备钴基钴铬钼合金的表征

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Because of the increasingly utilization of CoCrMo alloy as biomaterial. The research is devoted toward characterization fabricated samples from gas atomized CoCrMo alloy powder by powder metallurgy route. The powder with average particle size 47.983 μm was ball milled for 8 hrs. at 175 rpm in stainless steel 304 SS container. Green compacts produced by uniaxial double pressing under (700,800,900,100,1100 &1200) MPa. Sintering was performed in electric resistance furnace in argon atmosphere at temperatures (1000, 1100, 1200 and 1300)°C for 2 soaking hrs for first group. Second group of samples were sintered at the same conditions but at (1200 °C) for different soaking times (1, 1.5, 2 & 2.5) hrs. The comparison of the chemical composition of the as received CoCrMo powder with that detected by SEM-Mapping for sintered compacts revealed high similarity between their values. Green density of the compacts is reached its greater value at (1000 MPa) which was 6.38 gm.cm
机译:由于越来越多地利用CoCrMo合金作为生物材料。该研究致力于通过粉末冶金方法表征由气体雾化的CoCrMo合金粉末制备的样品。将平均粒径为47.983μm的粉末球磨8小时。在304 SS不锈钢容器中以175 rpm的转速运转。通过在(700,800,900,100,1100&1200)MPa下单轴双压生产的压坯。对于第一组,在氩气氛中在电阻炉中于温度(1000、1100、1200和1300)℃下进行烧结2小时。第二组样品在相同条件下但在(1200°C)下烧结不同的浸泡时间(1、1.5、2和2.5)小时。所接收的CoCrMo粉末的化学组成与通过SEM-Mapping检测的烧结块的化学组成的比较表明,它们的值之间具有高度相似性。压坯的生坯密度在(1000 MPa)达到了6.38 gm.cm的更高值

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