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AN ASPERITY-BASED FRACTIONAL COVERAGE MODEL FOR SOLID LUBRICANT FILM TRANSFER ON A 3D SURFACE

机译:3D表面上基于润滑剂的基于分数的固体润滑剂膜传递模型

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摘要

Topography data was obtained from an aluminum thin film deposited unto a substrate. Using this 20 μm × 20 μm specimen, an asperity-based fractional coverage model was used to predict (1) the friction coefficient at a pad/disk interface (2) the thickness of deposited lubricant film and (3) the wear factor for a compacted lubricant pellet in 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. The model was based on a previous 1-D control volume fractional coverage model which was used to glean tribological parameters including friction coefficient and wear factor. In this model, the wear rate of the pellet, pad friction coefficient, and lubricant thickness can be determined as a function of the pellet load, slider pad load, disk speed, and material properties. Steady-state results from the model adequately predict the self-repairing and self-replenishing nature of powder lubrication as a function of topography.
机译:从沉积到基板上的铝薄膜获得形貌数据。使用这个20μm×20μm的样品,使用基于粗糙度的分数覆盖模型来预测(1)垫/盘界面的摩擦系数(2)沉积的润滑膜的厚度和(3)摩擦系数紧密接触的压实润滑剂颗粒。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。该模型基于先前的一维控制体积分数覆盖模型,该模型用于收集摩擦参数,包括摩擦系数和磨损系数。在此模型中,颗粒的磨损率,摩擦垫摩擦系数和润滑剂厚度可根据颗粒载荷,滑块载荷,磁盘速度和材料性能确定。该模型的稳态结果可以充分预测粉末润滑的自我修复和自我补充性质,这是形貌的函数。

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