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Role of third bodies in friction behavior of diamond-like nanocomposite coatings studied by in situ tribometry

机译:原位摩擦学研究第三体在类金刚石纳米复合涂层摩擦行为中的作用

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摘要

The friction and wear behavior of amorphous diamond-like nanocomposite (DLN) coatings (C:H:Si:O) in low speed, dry sliding contact has been investigated using a home-built in situ tribometer. Tests were performed under reciprocating sliding against sapphire and steel hemispheres in dry (~4% RH) and moist (35 to 52% RH) air at contact stresses of 0.7 and 1.1 GPa. In situ visual observations identified how third body processes affected the friction behavior of DLN coatings. For all test conditions, a transfer film began to form on the sapphire hemisphere during the first cycle, and the coefficient of friction dropped during further buildup of the transfer film. Video analysis showed most of the sliding motion took place between the transfer film on the hemisphere and the DLN coating. This velocity accommodation mode, interfacial sliding, was responsible for steady-state friction coefficients between 0.03 and 0.05 with lower values obtained at high stress and low RH. When the transfer film brake up the friction began to spike (0.1 ≤ μ ≤ 0.5); during the spikes, shearing of third bodies also contributed to velocity accommodation, as debris attached, detached and recirculated between the hemisphere and the track. Subsequently, the friction coefficient fluctuated between low and high values due to reformation and breakup of the transfer film, respectively.
机译:使用自制的原位摩擦计研究了无定形类金刚石纳米复合材料(DLN)涂层(C:H:Si:O)在低速,干式滑动接触下的摩擦磨损性能。在干燥(〜4%RH)和潮湿(35〜52%RH)的空气中,在0.7和1.1 GPa的接触压力下,在蓝宝石和钢半球往复滑动的情况下进行测试。现场视觉观察确定了第三体过程如何影响DLN涂层的摩擦性能。对于所有测试条件,在第一个循环中,都会在蓝宝石半球上开始形成转印膜,并且在进一步堆积转印膜时,摩擦系数会下降。视频分析显示,大多数滑动运动发生在半球上的转移膜和DLN涂层之间。这种速度调节模式(界面滑动)是稳态摩擦系数在0.03和0.05之间的原因,在高应力和低RH下获得的数值较低。当转印膜制动起来时,摩擦开始尖峰(0.1≤μ≤0.5);在峰值期间,第三块物体的剪切作用还有助于速度调节,因为碎屑在半球和轨道之间附着,分离和再循环。随后,由于转印膜的再形成和破裂,摩擦系数分别在低值和高值之间波动。

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