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Analysis of the apparent friction of polymeric surfaces

机译:聚合物表面的表观摩擦分析

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The apparent friction coefficient is the ratio between the tangential force and the normal load applied to moving body in contact with the surface of a material. This coefficient includes a so-called "true local friction" at the interface and a "geometrical friction" which is the ploughing effect. The material underneath a moving tip may display various types of behaviour: elastic, elastic-plastic where elastic and plastic strain are present in the contact area, or 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 of a scratching tip which links the apparent friction to the local friction and contact geometry was recently proposed. An inverse analysis is used in the present work to estimate the local friction from the measured apparent friction and a knowledge of the contact area and tip shape. The polymer true friction coefficient displays temperature and sliding speed dependency, which may be attributed to the surface thermodynamics. It is shown that the local friction depends on the level of strain in the polymer at the contact interface.
机译:表观摩擦系数是切向力与施加到与材料表面接触的移动体的法向载荷之间的比率。该系数包括在界面处的所谓的“真正的局部摩擦”和作为耕作效果的“几何摩擦”。活动尖端下方的材料可能会表现出各种类型的行为:弹性,在接触区域存在弹性和塑性应变的弹塑性或完全塑性。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。最近提出了将表观摩擦力与局部摩擦力和接触几何形状联系起来的刮擦尖端的表面流线模型。在当前工作中使用逆分析来根据测得的表观摩擦以及接触面积和尖端形状的知识来估计局部摩擦。聚合物真实摩擦系数显示出温度和滑动速度的依赖性,这可以归因于表面热力学。结果表明,局部摩擦取决于聚合物在接触界面处的应变水平。

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