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Friction and wear mechanisms of smooth diamond films during sliding in air and dry nitrogen

机译:空气中滑动过程中光滑金刚石薄膜的摩擦和磨损机制及干氮

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Under the influence of extreme contact pressure and high frictional heating, the real contact areas of diamond films may undergo phase transformation and gradual wear during long-duration dry sliding contacts. The wear debris particles thataccumulate at the contact interface can then dominate the long-term sliding friction and wear performance of these films. In this study, employing a combination of transmission electron microscopy, electron diffraction, Raman spectroscopy, and electronenergy loss spectroscopy, the authors explored the structural chemistry of the diamond debris particles and the sliding contact interfaces of smooth diamond films (surface roughness: 20-40 nm, root mean square (RMS)) and described their friction and wearmechanisms in open air and dry nitrogen (N{sub}2). The results of tribological tests indicated that the friction coefficients of Si{sub}3N{sub}4 balls against smooth diamond films were 0.04 in dry N{sub}2 but 0.1-0.15 in air. Friction fluctuatedsubstantially in dry N{sub}2, especially during long-duration tests. The wear rates of Si{sub}3N{sub}4 balls were by factors of 5 to 6 lower in dry N{sub}2 than in air, but a reverse situation was observed for diamond films; their wear rates weresignificantly higher in dry N{sub}2 than in air. The results of the surface and structure analytical studies have suggested that the sp{sup}3-bonded crystalline diamond had transformed to a sp{sup}2-bonded amorphous state, but not to crystalline graphite.
机译:在极端接触压力和高摩擦加热的影响下,金刚石薄膜的真正接触区域可能经历长期干燥滑动触点期间的相变和逐渐磨损。然后,在接触界面处的磨损碎片颗粒可以占据这些薄膜的长期滑动摩擦和磨损性能。在该研究中,采用透射电子显微镜,电子衍射,拉曼光谱和电能损失光谱的组合,作者探讨了金刚石碎片颗粒的结构化学和光滑金刚石薄膜的滑动接触界面(表面粗糙度:20-40 NM,均方方(RMS))并描述了露天和干燥氮气(N {Sub} 2)中的摩擦和磨损机制。摩擦学检测结果表明,在空气中干燥的N {} 2,Si {um} 3N {sub} 4球的摩擦系数为0.04,但在空气中为0.1-0.15。摩擦在干燥的N {Sub} 2中波动,特别是在长时间测试期间。 Si {sub} 3n {sub} 4球的磨损率在干燥的n {sub} 2中的5至6的因素比在空气中,但对于金刚石电影观察到反向的情况;它们的磨损率在干燥的n {sub} 2中越来越高于空气。表面和结构分析研究的结果表明SP {SUP} 3键合结晶金刚石已转化为SP {SUP} 2键合的无定形状态,但不为结晶石墨。

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