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On the Analysis of Chatter in Mechanical Systems with Impacts

机译:抗冲击机械系统中喋喋不休的分析

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In rigid-body mechanics, models that capture collisional contact as an instantaneous exchange of momentum may exhibit dynamics that include infinite sequences of impacts accumulating in finite time to a state of persistent contact, often referred to as chatter. In this paper, we review theoretical tools for the analysis of transient and steady-state behavior in the vicinity of critical periodic orbits for which chatter terminates at a point corresponding to the imminent release from persistent contact, and illustrate the application of this theory to a simplified model of a mechanical pressure relief valve. A general theory for single-degree-of-freedom impact oscillators, previously described in an unpublished manuscript by Nordmark and Kisitu, is shown to yield both qualitative and quantitative agreement with model simulation results. The predicted bifurcation structure shows that the border orbit unfolds supercritically into a universal cascade of local attractors with nontrivial scaling relationships.
机译:在刚体力学,模型捕获作为动量瞬时交换碰撞接触可以表现出动力学包括影响在有限时间内积累到永久接触的状态下的无限序列,通常被称为颤。在本文中,我们审查的瞬态和稳态行为到其对应于从持续的接触与即将发布在一个点上喋喋不休终止关键周期轨道附近的分析理论工具,并说明这一理论的应用的机械卸压阀的简化模型。单度的自由度冲击振荡器,预先在由Nordmark的和Kisitu的未发表的手稿中描述的一般理论,被示出以产生具有模拟结果定性和定量协议。预测分支结构显示,边境轨道超临界展开成当地吸引与平凡的比例关系的普遍级联。

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