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Effects of substrate surface roughness and nano/micro particle additive size on friction and wear in lubricated sliding

机译:基材表面粗糙度和纳米/微颗粒添加剂尺寸对润滑滑动摩擦磨损的影响

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摘要

Macroscopic wear experiments were complemented by atomistic simulations to study the effect of nano- and micro-scale titanium dioxide particle lubricant additives on friction and wear. The size of the particles and initial roughness of the sliding surfaces were varied to characterize the interrelated effects of these two properties. Results from both experiments and simulations suggest that there is an optimal particle size that will minimize friction and wear for a given surface roughness. Analyses support a previously-proposed mechanism for particle based additives in which the particles fill in valleys on the sliding surfaces. In this context, particles that are smaller than the characteristic roughness of the surfaces are most likely to perform this function.
机译:宏观磨损实验互补,以研究纳米和微级二氧化钛颗粒润滑剂添加剂对摩擦和磨损的影响。 颗粒的尺寸和滑动表面的初始粗糙度变化,以表征这两个性质的相互关联效果。 两种实验和模拟的结果表明,存在最佳的粒度,从而最大限度地减少给定表面粗糙度的摩擦和磨损。 分析支持先前提出的基于颗粒添加剂的机制,其中颗粒填充滑动表面上的谷。 在这种情况下,小于表面的特征粗糙度的粒子最有可能执行该功能。

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