研究了粉末316L不锈钢添加活化剂的液相强化烧结。在1200~1350℃采用真空烧结,对含量为2%~8%的Cu3P和Fe Mo B两种烧结助剂进行比较,后者采用两种粒度。结果表明:Fe Mo B细粉强化作用最强;增加烧结助剂含量和提高烧结温度可以提高烧结...研究了粉末316L不锈钢添加活化剂的液相强化烧结。在1200~1350℃采用真空烧结,对含量为2%~8%的Cu3P和Fe Mo B两种烧结助剂进行比较,后者采用两种粒度。结果表明:Fe Mo B细粉强化作用最强;增加烧结助剂含量和提高烧结温度可以提高烧结密度;最佳条件为添加6%的Fe Mo B细粉、室温压制、1250℃烧结,烧结密度接近7.70g/cm3。另外,压缩试验表明添加量大于6%后,添加Fe Mo B的烧结制品的塑性比添加Cu3P的塑性要好。展开更多
WC-8Co cemented carbide samples were processed via microwave irradiation in a 2.45 GHz, high-power multi-mode microwave cavity. The densification of the compacts and the microstructures of the prepared alloys were stu...WC-8Co cemented carbide samples were processed via microwave irradiation in a 2.45 GHz, high-power multi-mode microwave cavity. The densification of the compacts and the microstructures of the prepared alloys were studied. The results demonstrate that the liquid phase is formed around 1300 ℃ and nearly full densification is obtained at 1450 ℃ for 5 min via microwave irradiation. The microstructures of microwave sintered samples have finer and more uniform WC grains than those of vacuum sintered samples. Besides, the WC grain size and distribution are only decided by the sintering temperature. Holding time has negligible effects on them. No matter how holding time is, the mean grain size is 2.7 pan when the sintering temperature is kept at 1450 ℃.展开更多
文摘研究了粉末316L不锈钢添加活化剂的液相强化烧结。在1200~1350℃采用真空烧结,对含量为2%~8%的Cu3P和Fe Mo B两种烧结助剂进行比较,后者采用两种粒度。结果表明:Fe Mo B细粉强化作用最强;增加烧结助剂含量和提高烧结温度可以提高烧结密度;最佳条件为添加6%的Fe Mo B细粉、室温压制、1250℃烧结,烧结密度接近7.70g/cm3。另外,压缩试验表明添加量大于6%后,添加Fe Mo B的烧结制品的塑性比添加Cu3P的塑性要好。
基金Project (51274107) supported by the National Natural Science Foundation of China
文摘WC-8Co cemented carbide samples were processed via microwave irradiation in a 2.45 GHz, high-power multi-mode microwave cavity. The densification of the compacts and the microstructures of the prepared alloys were studied. The results demonstrate that the liquid phase is formed around 1300 ℃ and nearly full densification is obtained at 1450 ℃ for 5 min via microwave irradiation. The microstructures of microwave sintered samples have finer and more uniform WC grains than those of vacuum sintered samples. Besides, the WC grain size and distribution are only decided by the sintering temperature. Holding time has negligible effects on them. No matter how holding time is, the mean grain size is 2.7 pan when the sintering temperature is kept at 1450 ℃.