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DISC BRAKE RING-ELEMENT MODELING INVOLVING FRICTION-INDUCED VIBRATION

机译:盘式制动环元件建模涉及摩擦振动

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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:本文介绍了盘在盘两侧的等于接触载荷下盘式制动系统的分析建模和动态特性。假设作用在垫上的摩擦力沿着其后缘浓缩,由于摩擦力引起的那一刻,因此导致正常力的再分布。鉴于平等的接触力,光盘不会经历横向运动,而是仅经历横向运动,而是仅经历切向和径向振动。该模型中唯一的非线性主要来自接触力。垫和盘之间的摩擦系数的依赖性在零相对速度下平滑,以避免差分夹杂物的问题。获得了盘和垫的一些初步数值结果。结果在滑动状态期间表现出粘滑的粘滑率。后来的部件主要是由于盘的较高的弹性面内模式,而粘贴装置是涉及最低焊盘模式的全局盘焊盘运动。

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