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An in situ mechanism for self-replenishing powder transfer films: Experiments and modeling

机译:自补粉转移膜的原位机理:实验和建模

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Pellets were formed by compacting MoS{sub}2 powder. A series of tests were conducted on a tribometer that consisted of simultaneous pellet-on disk and pad-on disk sliding contacts. The purpose of the tests was to intentionally transfer MoS{sub}2 third-body particles to a disk where its lubrication characteristics could be studied. This work also showed that the M0S2 pellet actually acted as a self-repairing, self-replenishing, oil-free lubrication mechanism. In the experiment, a pellet is sheared against the disk surface while the loaded slider rides on the lubricated surface and depletes the deposited powder film. A control-volume fractional coverage modeling approach was employed to predict both (1) the friction coefficient at the pad/disk interface and (2) the wear factor for the lubricated pellet/disk sliding contact. The fractional coverage varies with time and is a useful modeling parameter for quantifying the amount of third body film covering the disk asperities. In the model, the wear rate of a pellet and pad friction coefficient can be determined as a function of the pellet load, slider pad load, disk speed, and material properties. Results from the model qualitatively and quantitatively predict the tribological behavior of the experimental sliding contacts reasonably well.
机译:通过压实MoS {sub} 2粉末形成粒料。在摩擦计上进行了一系列测试,该摩擦计由同时在圆盘上的颗粒和圆盘上的滑动触点组成。测试的目的是将MoS {sub} 2第三体粒子故意转移到可以研究其润滑特性的磁盘上。这项工作还表明,MoS2颗粒实际上起到了自我修复,自我补充,无油的润滑作用。在实验中,当加载的滑块在润滑表面上滑动并耗尽沉积的粉末膜时,将颗粒切向磁盘表面。控制体积分数覆盖率建模方法用于预测(1)垫/盘界面的摩擦系数和(2)润滑的丸/盘滑动接触的磨损系数。分数覆盖率随时间变化,并且是用于量化覆盖磁盘凹凸的第三体膜数量的有用建模参数。在该模型中,可以根据丸粒载荷,滑块载荷,磁盘速度和材料性能确定丸粒的磨损率和垫摩擦系数。该模型的结果在定性和定量上很好地预测了实验滑动接触的摩擦学行为。

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