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首页> 外文期刊>International Journal of Automotive Technology >ANALYSIS OF DISC BRAKE INSTABILITY DUE TO FRICTION-INDUCED VIBRATION USING A DISTRIBUTED PARAMETER MODEL
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ANALYSIS OF DISC BRAKE INSTABILITY DUE TO FRICTION-INDUCED VIBRATION USING A DISTRIBUTED PARAMETER MODEL

机译:基于分布参数模型的摩擦诱导圆盘制动器失稳分析

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摘要

This paper deals with friction-induced vibration of a disc brake system with a constant friction coefficient. A linear, lumped, and distributed parameter model to represent the floating caliper disc brake system is proposed. The complex eigenvalues are used to investigate the dynamic stability, and, in order to verify simulations which are based on the theoretical model, an experimental modal test and dynamometer test are performed. The comparison of experimental and theoretical results shows good agreement, and the analysis indicates that modal coupling due to friction forces is responsible for disc brake squeal. Also, squeal type instability is investigated, using a parametric analysis. This indicates which parameters have influence on the propensity of brake squealing. This is helpful for validating the analysis model and establishing confidence in the experimental results of the modified system. These results may also be useful during system development or diagnostic analysis.
机译:本文研究具有恒定摩擦系数的盘式制动系统的摩擦引起的振动。提出了线性,集总和分布的参数模型来表示浮动卡钳盘式制动器系统。复特征值用于研究动态稳定性,并且为了验证基于理论模型的仿真,执行了实验模态测试和测功机测试。实验和理论结果的比较显示出良好的一致性,并且分析表明,由于摩擦力引起的模态耦合是盘式制动器的尖叫声的原因。此外,使用参数分析研究尖叫型不稳定性。这表明哪些参数会影响制动尖叫的倾向。这有助于验证分析模型并建立对改进系统的实验结果的信心。这些结果在系统开发或诊断分析期间也可能有用。

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