Pure WC-6%Co nanosized composite powders were synthesized via a low-temperature method.The effects of carbon source on microstructure characteristic of composite powders were investigated,and the effects of heat-treat...Pure WC-6%Co nanosized composite powders were synthesized via a low-temperature method.The effects of carbon source on microstructure characteristic of composite powders were investigated,and the effects of heat-treatment parameter on carbon content of composite powders were also discussed.The results of SEM and XRD revealed that the carbon decomposing from glucose was more active than carbon black.Therefore,WC-Co nanosized composite powders could be synthesized at 900°C for 1 h under a hydrogen atmosphere.The individual WC grains were bonded together into a long strip under the action of cobalt.The results of carbon analysis revealed that the total carbon content decreased with the increase of the temperature in the range of 800-1000°C.Moreover,the total carbon content and the compounded carbon increased with the increase of the flow rate of H2 in the range of 1.1-1.9 m3/h.展开更多
本文以用于成品机架的WC-6%Co(文中含量均为质量分数)硬质合金辊环为研究对象,在其轧制400 T 80A帘线钢线材后,根据轧槽的表面形貌、金相显微组织和裂纹扩展情况对热疲劳裂纹特征进行了分析;结合轧制工况条件,对热疲劳裂纹的形成进行了...本文以用于成品机架的WC-6%Co(文中含量均为质量分数)硬质合金辊环为研究对象,在其轧制400 T 80A帘线钢线材后,根据轧槽的表面形貌、金相显微组织和裂纹扩展情况对热疲劳裂纹特征进行了分析;结合轧制工况条件,对热疲劳裂纹的形成进行了讨论。分析结果表明:WC-6%Co硬质合金辊环轧槽表面上并未出现明显的龟裂纹,轧槽上的热疲劳裂纹细小且浅;轧制过程中的磨损、氧化、粘结相元素的扩散和冷却水的冲刷等因素的共同作用导致了材料中的WC晶粒的碎化和剥落而形成凹坑;热裂纹在向轧槽内部扩展过程中,以粗大WC晶粒的穿晶断裂为主;辊环材料的高的导热性和断裂韧性能够抑制热疲劳裂纹的萌生和扩展。展开更多
基金Project(51274107)supported by the National Natural Science Foundation of ChinaProject(2015FB127)supported by the Yunnan Natural Science Foundation,ChinaProject(2016P20151130003)supported by Analysis Foundation of Kunming University of Science and Technology,China
文摘Pure WC-6%Co nanosized composite powders were synthesized via a low-temperature method.The effects of carbon source on microstructure characteristic of composite powders were investigated,and the effects of heat-treatment parameter on carbon content of composite powders were also discussed.The results of SEM and XRD revealed that the carbon decomposing from glucose was more active than carbon black.Therefore,WC-Co nanosized composite powders could be synthesized at 900°C for 1 h under a hydrogen atmosphere.The individual WC grains were bonded together into a long strip under the action of cobalt.The results of carbon analysis revealed that the total carbon content decreased with the increase of the temperature in the range of 800-1000°C.Moreover,the total carbon content and the compounded carbon increased with the increase of the flow rate of H2 in the range of 1.1-1.9 m3/h.
文摘本文以用于成品机架的WC-6%Co(文中含量均为质量分数)硬质合金辊环为研究对象,在其轧制400 T 80A帘线钢线材后,根据轧槽的表面形貌、金相显微组织和裂纹扩展情况对热疲劳裂纹特征进行了分析;结合轧制工况条件,对热疲劳裂纹的形成进行了讨论。分析结果表明:WC-6%Co硬质合金辊环轧槽表面上并未出现明显的龟裂纹,轧槽上的热疲劳裂纹细小且浅;轧制过程中的磨损、氧化、粘结相元素的扩散和冷却水的冲刷等因素的共同作用导致了材料中的WC晶粒的碎化和剥落而形成凹坑;热裂纹在向轧槽内部扩展过程中,以粗大WC晶粒的穿晶断裂为主;辊环材料的高的导热性和断裂韧性能够抑制热疲劳裂纹的萌生和扩展。