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首页> 外文期刊>Scientific reports. >Systematic Breakdown of Amontons' Law of Friction for an Elastic Object Locally Obeying Amontons' Law
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Systematic Breakdown of Amontons' Law of Friction for an Elastic Object Locally Obeying Amontons' Law

机译:局部遵守阿蒙顿定律的弹性物体的阿蒙顿摩擦定律的系统分解

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In many sliding systems consisting of solid object on a solid substrate under dry condition, the friction force does not depend on the apparent contact area and is proportional to the loading force. This behaviour is called Amontons' law and indicates that the friction coefficient, or the ratio of the friction force to the loading force, is constant. Here, however, using numerical and analytical methods, we show that Amontons' law breaks down systematically under certain conditions for an elastic object experiencing a friction force that locally obeys Amontons' law. The macroscopic static friction coefficient, which corresponds to the onset of bulk sliding of the object, decreases as pressure or system length increases. This decrease results from precursor slips before the onset of bulk sliding, and is consistent with the results of certain previous experiments. The mechanisms for these behaviours are clarified. These results will provide new insight into controlling friction.
机译:在许多在干燥条件下由固体基质上的固体物体组成的滑动系统中,摩擦力不取决于表观接触面积,而是与加载力成比例。这种行为称为阿蒙顿定律,表明摩擦系数或摩擦力与加载力之比是恒定的。但是,在这里,我们使用数值和分析方法表明,在某些条件下,当弹性物体承受的摩擦力局部遵守阿蒙顿定律时,阿蒙顿定律会系统地分解。随着压力或系统长度的增加,对应于物体整体滑动开始的宏观静摩擦系数减小。这种减少是由于大量滑动开始之前的前体滑动引起的,并且与某些先前实验的结果一致。阐明了这些行为的机制。这些结果将为控制摩擦提供新的见解。

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