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Influence of Ultrasonic Oscillation on Static and Sliding Friction

机译:超声波振荡对静摩擦和滑动摩擦的影响

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摘要

Vibrations of varying frequency and amplitude are used in many technological areas to control and reduce friction. In this study we report the results of systematic high-precision measurements of the static and sliding friction under the influence of ultrasonic oscillations. We investigate the effect of ultrasonic oscillations for in-plane and out-of-plane oscillations in the completely relevant interval of oscillation amplitudes and sliding velocities and for various material pairings. The experimental results are interpreted on the basis of both macroscopic and microscopic models. There are two main effects which are of interest for tribological applications. Firstly, the frictional force typically decreases with increasing oscillation amplitude, with an oscillation amplitude of about 0.1 μm typically being sufficient for a significant decrease of frictional force. Secondly, the decrease of force is larger at smaller sliding velocities; therefore, at sufficiently large oscillation amplitudes, the frictional force always increases with sliding velocity. This effect can be used to suppress frictionally induced vibrations.
机译:在许多技术领域中使用频率和振幅变化的振动来控制和减少摩擦。在这项研究中,我们报告了在超声振荡的影响下对静摩擦和滑动摩擦进行系统高精度测量的结果。我们研究了在完全相关的振荡幅度和滑动速度区间以及各种材料配对中,超声振荡对于平面内和平面外振荡的影响。实验结果是基于宏观和微观模型进行解释的。摩擦学应用中有两个主要影响。首先,摩擦力通常随着振动幅度的增加而减小,其中大约0.1μm的振动幅度通常足以显着减小摩擦力。其次,在较小的滑动速度下,力的减小较大。因此,在足够大的振动幅度下,摩擦力总是随滑动速度而增加。该效果可用于抑制摩擦引起的振动。

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