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Mechanism of the Effect of Interface Structure on the Thermal Stability of Polycrystalline Diamond Compact

机译:界面结构对多晶金刚石复合片热稳定性影响的机理

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Thermal stability is an important performance parameter of polycrystalline diamond compact.This paper focuses on the research for test method of PDC thermal stability performance.With the improvement method,the thermal stability performance of PDC with five typical macroscopic interface structure such as planar structure,v-groove,u-groove,ring groove,ring claw-tooth are tested at normal temperature and after heating,With SEM,we study on its mechanism of thermal stability performance due to different macroscopic interfaces structure,analyze the reason why PDC thermal stability performance is different with the changing of PDC macroscopic interface structure.The research result shows that the temperature influenced the wear property and the anti-impact property of PDC obviously.And it has great influence on the anti-impact property.The thermal stability of the vessel-shaped interface structure is better than the fiat interface structure.
机译:热稳定性是聚晶金刚石复合材料的重要性能参数。本文重点研究了PDC热稳定性能的测试方法。通过改进方法,具有五个典型的宏观界面结构如平面结构,V形结构的PDC的热稳定性能。槽,U型槽,环形槽,环形爪齿在常温和加热后进行测试,通过SEM,研究了由于宏观界面结构不同而引起的热稳定性能机理,分析了PDC热稳定性能的原因研究结果表明,温度对PDC的磨损性能和抗冲击性能有明显的影响,并且对PDC的抗冲击性能影响很大。形的界面结构比法定的界面结构要好。

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