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A surface flow line model of a scratching tip: apparent and true local friction coefficients

机译:刮尖的表面流线模型:表观和真实的局部摩擦系数

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摘要

The apparent friction coefficient is the ratio between the tangential force and the normal load applied to a moving scratching tip. It includes a so-called "true local" friction coefficient, which is the scission at the interface between the tip and the surface being scratched, and a "geometrical" friction coefficient, which is the plough effect due to the wave front created ahead of the moving tip and depends on the shape of the tip. Like in any mechanical test, three basic types of behaviour of the material at the interface are observed: purely elastic, elastic-plastic and fully plastic. As is usual in polymers, the material behaviour is time and temperature dependent and may exhibit strain hardening. A surface flow line model is developed here to deduce the geometrical and true friction coefficients at the interface between a moving scratching tip and a surface from the apparent friction coefficient. Using this model, several situations may be simulated to predict the influence of the geometry of the tip on the scratch resistance of the material.
机译:表观摩擦系数是切向力与施加到运动的刮擦尖端的法向载荷之间的比率。它包括一个所谓的“真正的局部”摩擦系数,即在尖端和被刮擦的表面之间的界面处的分裂,以及一个“几何”摩擦系数,这是由于波前产生的波前引起的犁效应。移动的笔尖,并取决于笔尖的形状。像在任何机械测试中一样,观察到材料在界面处的三种基本行为:纯弹性,弹塑性和全塑性。像在聚合物中一样,材料的行为取决于时间和温度,并且可能表现出应变硬化。在此开发了一个表面流线模型,以根据表观摩擦系数推导运动的刮擦尖端与表面之间的界面处的几何摩擦系数和真实摩擦系数。使用该模型,可以模拟几种情况以预测尖端的几何形状对材料的耐划伤性的影响。

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