切向接触刚度对谐波强迫摩擦振荡器的影响

J. Liang, B. Feeny
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引用次数: 5

摘要

本文讨论了柔性接触对机械系统动态摩擦行为的影响。接触柔度是由于接触点或周围结构的弹性变形引起的。本文分为两部分。第一部分主要研究具有连续宏观滑动的振荡。由质量在无质量柔性接触上谐波滑动组成的理想模型产生摩擦-速度图中所见的迟滞特征。根据接触刚度、摩擦水平和振荡频率/振幅,可以预测和量化过渡特征。已经进行了实验来验证该模型。该模型和相关分析为解释实验转变行为提供了一种手段。论文的第二部分讨论了与宏观粘滑过程相关的粘着动力学。在一根棍子的过程中,质量在接触处发生微小的振荡。这可能涉及到一个微尺度的粘滑过程。我们把整个过程称为双重粘滑事件。对数值研究和实验研究进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Effects of Tangential Contact Stiffness on a Harmonically Forced Friction Oscillator
This paper addresses the effects of a compliant contact on the dynamical friction behaviors in mechanical systems. Contact compliance is due to the elastic deformation at the contact point or the surrounding structure. This paper is divided into two parts. The first part focuses on oscillations with continuous macroscopic sliding. An idealized model consisting of a mass sliding harmonically on a massless compliant contact produces the hysteresis feature seen in friction-velocity plots. Transition features, depending on the contact stiffness, friction level, and frequency/amplitude of oscillation, are predicted and quantified. Experiments have been conducted to verify the model. The model and associated analysis provide a means for interpreting experimental transition behaviors. The second part of the paper addresses the sticking dynamics associated with a macroscopic stick-slip process. During a stick, the mass undergoes a microscopic oscillation at the contact. This can involve a microscale stick-slip process. We refer to the entire process as a double stick-slip event. Numerical and experimental studies are compared.
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