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Boundary lubrication of heterogeneous surfaces and the onset of cavitation in frictional contacts

机译:异质表面的边界润滑和摩擦接触中的气穴现象

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Surfaces can be slippery or sticky depending on surface chemistry and roughness. We demonstrate in atomistic simulations that regular and random slip patterns on a surface lead to pressure excursions within a lubricated contact that increase quadratically with decreasing contact separation. This is captured well by a simple hydrodynamic model including wall slip. We predict with this model that pressure changes for larger length scales and realistic frictional conditions can easily reach cavitation thresholds and significantly change the load-bearing capacity of a contact. Cavitation may therefore be the norm, not the exception, under boundary lubrication conditions.
机译:根据表面的化学性质和粗糙度,表面可能会打滑或发粘。我们在原子模拟中证明,表面上的规则和随机滑动模式会导致润滑触点内的压力偏移,该偏移随接触间距的减小而平方增加。一个简单的包括壁滑的水动力模型可以很好地捕捉到这一点。我们用该模型预测,在较大的长度范围内和实际的摩擦条件下,压力变化很容易达到气蚀阈值,并显着改变接触件的承载能力。因此,在边界润滑条件下,空化可能是常态,而不是例外。

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