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首页> 外文期刊>Journal of vibration and control: JVC >Disc Brake Ring-Element Modeling Involving Friction-Induced Vibration
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Disc Brake Ring-Element Modeling Involving Friction-Induced Vibration

机译:涉及摩擦引起的振动的盘式制动器环元建模

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摘要

This paper presents the analytical modeling and dynamic characteristics of disc brake systems under equal contact loads on both sides of the disc. The friction force acting on the pad is assumed to be concentrated along its trailing edge due to the moment arising from the friction force, and thus results in a redistribution of normal forces. In view of equal contact forces, the disc will not experience transverse motion but only tangential and radial vibrations. The only nonlinearity involved in the model arises mainly from contact forces. The dependence of the friction coefficient between the pad and disc is smoothed at zero relative velocity to avoid the problem of differential inclusion. Some preliminary numerical results of the disc and pad are obtained. The results exhibit the occurrence of stick-slip with a relatively small high frequency component during the sliding regime. The later component is mainly due to higher elastic in-plane modes of the disc, whereas the stick-slip component is a global disc-pad motion involving the lowest pad mode.
机译:本文介绍了在碟片两侧相等的接触载荷下碟刹系统的解析模型和动力学特性。假定由于摩擦力产生的力矩,作用在垫上的摩擦力沿其后缘集中,因此导致法向力的重新分布。考虑到相等的接触力,圆盘将不会经历横向运动,而只会经历切向和径向振动。模型中涉及的唯一非线性主要是由接触力引起的。垫和盘之间的摩擦系数的相关性以零相对速度被平滑,以避免微分夹杂的问题。获得了磁盘和垫片的一些初步数值结果。结果表明在滑动过程中发生了具有相对较小的高频分量的粘滑现象。后面的分量主要是由于光盘的较高弹性平面内模式引起的,而粘滑分量是涉及最低垫模式的全局光盘垫运动。

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