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Due to the excellent combination of wear resistance and fracture toughness,the ultrafine-grained WC-Co composites can significantly improve the durability and reliability of industrial tools.However,the grinding of ultrafine-grained WC-Co remains a challenge.In order to provide an experimental basis for improving grinding quality of ultrafine-grained WC-Co,a series of surface grinding experiments on ultrafine-grained WC-Co hardmetals were conducted by diamond wheel under various grinding conditions,and the material removal behavior and surface integrity in grinding of ultrafine-grained WC-Co materials were characterized by means of scanning electron microscopy(SEM),X-ray microstress analyzer and surface roughness analyzer in this paper.The results indicate that the material removal behavior in grinding of ultrafine-grained WC-Co materials is determined not only by the abrasive grain size on the wheel,but also by the depth of cut.The roughness values of ground surface increase with increasing grit size of diamond wheel,and increase initially,then decrease with increase in depth of cut.Grinding causes the residual compressive stress in the surface layer of ground cemented carbides under various grinding conditions;the magnitude of residual surface stress increases with increasing grit size of diamond wheel,and isn’t changed obviously along with the change of depth of cut.  相似文献   
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碳含量对纳米硬质合金组织和性能的影响   总被引:11,自引:0,他引:11  
该文研究碳含量对纳米硬质合金组织和性能的影响 .通过对添加不同碳含量合金的组织观察和机械性能比较 ,发现碳对硬质合金的 WC晶粒度、相组织和机械性能都有着极其重要的影响 .研究结果表明 ,通过控制碳的含量可以控制 WC晶粒在烧结过程中的长大 .  相似文献   
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