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Friction and Wear of a Spherical Indenter under Influence of Out-of-Plane Ultrasonic Oscillations

机译:平面外超声振荡影响下球形压头的摩擦磨损

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摘要

This paper presents an experimental and theoretical investigation of friction and wear of a spherical indenter. With the pin-on-disc-tribometer the out-of-plane oscillations are applied to the sliding indenter. Oscillations lead to a decrease of the coefficient of friction, and this effect is also related to the sliding velocity and oscillation amplitude. During the sliding movement, the contact area of indenter increases due to the wear of material. This radius of the worn spherical cap is measured after each sliding period. It is found that the radius of the wear flat increases with sliding distance according to a power law with the power 1/4 and is independent of the sliding velocity. It further is practically insensitive to the presence of oscillations. A theoretical analysis and a numerical simulation based on the method of dimensionality reduction are carried out, both describing the experimental data very well.
机译:本文介绍了球形压头的摩擦和磨损的实验和理论研究。使用销钉盘式摩擦计时,平面外振荡会施加到滑动压头上。振荡会导致摩擦系数降低,并且这种影响还与滑动速度和振荡幅度有关。在滑动过程中,压头的接触面积由于材料的磨损而增加。在每个滑动周期后测量磨损的球形帽的半径。已发现,磨损平面的半径根据幂乘幂为1/4的幂律随滑动距离而增加,并且与滑动速度无关。它实际上对振荡的存在不敏感。进行了基于降维方法的理论分析和数值模拟,很好地描述了实验数据。

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