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Influence of Frictional Interface State on Tribological Performance of Sintered Polycrystalline Diamond Sliding Against Different Mating Materials

机译:摩擦界面状态对不同配合材料烧结多晶金刚石摩擦性能的影响

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摘要

Understanding the evolution of frictional interface state is of great significance to the effective design of antifriction and wear resistance properties at macro-scale contact, which plays an important role in the whole tribological performance. The trigological behavior of the sintered polycrystalline diamond (PCD) sliding against different mating materials was evaluated under dry nitrogen (N-2) environment. The coefficients of friction (COF) and wear rates of the PCD werediverse due to the various formations of transferflim and filling effects across sliding interfaces, which is dependent on the mating materials. Additionally, the Raman measurements demonstrate that the carbon rehybridization (sp(3) to sp(2)) process occurred accompanying with the formation of carbonaceous transferfilm during sliding. The effects of antifriction transferfilm formations and filling on the enhanced tribological performance of PCD at macro-scale contact were highlighted.
机译:了解摩擦界面状态的演变对于宏观尺度接触的抗摩擦性和耐磨性的有效设计具有重要意义,这在整个摩擦学性能中起着重要作用。 在干氮(N-2)环境下评估烧结多晶金刚石(PCD)对不同配合材料的三角行为。 PCD WERDIVESEE的摩擦系数(COF)和磨损率由于横跨滑动界面的转移和填充效果的各种形成,这取决于配合材料。 另外,拉曼测量表明,在滑动期间伴随着形成碳质转印晶体的形成,发生碳再杂交(SP(3)至SP(2))过程。 突出了抗抗率传递致致致致电致致致致致致致致致致致致致致致致致致致致致致致致致致致致致致电致致致致致致致致致致摩擦致抗摩擦的PCD的摩擦摩擦学性能。

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