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Single-asperity contributions to multi-asperity wear simulated with molecular dynamics

机译:用分子动力学模拟的多粗糙磨损的单粗糙贡献

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We use a molecular dynamics approach to simulate the wear of a rough ferrite surface due to multiple hard, abrasive particles under variation of normal pressure, grinding direction, and particle geometry. By employing a clustering algorithm that incorporates some knowledge about the grinding process such as the main grinding direction, we can break down the total wear volume into contributions from the individual abrasive particles in a time-resolved fashion. The resulting analysis of the simulated grinding process allows statements on wear particle generation, distribution, and stability depending on the initial topography, the grinding angle, the normal pressure, as well as the abrasive shape and orientation with respect to the surface.
机译:我们使用分子动力学方法来模拟粗糙的磨料颗粒的粗糙铁氧体表面的磨损,在常规压力,磨削方向和颗粒几何形状的变化下。 通过采用集群算法,该算法包含一些关于磨削过程的诸如主研磨方向的磨削过程,我们可以以时间解决的方式将总磨损量分解为来自各个磨料颗粒的贡献。 所得到的模拟研磨过程的分析允许对初始形貌,磨削角度,常压以及相对于表面的磨料形状和磨料形状和磨料形状和取向来达到磨损粒子产生,分布和稳定性的陈述。

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