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Analytical model of friction behavior during polymer scratching with conical tip

机译:带有锥形尖端的聚合物刮擦过程中的摩擦行为分析模型

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To investigate the effects of the contact geometry, interfacial friction, and substrate recovery on the behavior of polymer scratching using a conical tip, an analytical model is proposed. The normal stress acting on the contact surface between the tip and the substrate is described as a function of the included angle θ , representing the angle between two planes across the axis of the conical tip, and the attack angle β , representing the angle between the conical surface and the substrate material surface. The effects of the rear contact geometry on the scratch friction between the tip and substrate, represented by recovery angle φ , owing to the instantaneous elastic recovery of the polymer substrate, are also introduced. Validated by the experimental and numerical results from the literature, the proposed analytical model can describe well the scratch coefficient of friction (SCOF), which is defined as the ratio of the tangential force to the normal force. Meaningful guidance is provided to understand the scratch friction behavior.
机译:为了研究接触几何形状,界面摩擦和基底回复对使用锥形尖端的聚合物刮擦行为的影响,提出了一种解析模型。作用在尖端与基底之间的接触表面上的法向应力是由夹角θ(代表横跨圆锥形尖端的轴线的两个平面之间的角度)和迎角β(代表夹角之间的角度)的函数来描述的。锥形表面和基材材料表面。还引入了后接触几何形状对尖端和基底之间的刮擦摩擦的影响,其由于聚合物基底的瞬时弹性回复而由回复角φ表示。通过文献的实验和数值结果验证,所提出的分析模型可以很好地描述摩擦的划痕系数(SCOF),其定义为切向力与法向力之比。提供了有意义的指导以了解刮擦摩擦行为。

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