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Analytical Study Of The Stability Of A Two-ball Automatic Balancer

机译:两球式自动平衡机稳定性的分析研究

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摘要

A ball-type automatic balancer, which consists of several balls moving on a circular orbit, can effectively reduce the imbalance vibrations of an optical-disk drive. Under proper working conditions, the balls can counter-balance the imbalance of a disk by positioning the appropriate angles relative to the mass center of the disk. These particular positions are referred to as the perfect balancing positions. The proper working conditions depend on the stability of the perfect balancing positions. Much work has been done to determine the stability of the equilibrium positions numerically for some specific values of the system parameters. This paper, in contrast, analytically studies the stability characteristics of the equilibrium positions under several conditions. A theoretical model of an optical-disk drive packed with a two-ball automatic balancer is constructed first. The governing equations of the theoretical model are derived using Lagrange's equations. The closed-form formulae and the existence conditions for the equilibrium positions are presented. Experiments are conducted to verify the theoretical model. The stability of each equilibrium position is determined by Routh's criterion. Finally, general guidelines on the stability of the equilibrium positions are proposed.
机译:球形自动平衡器由几个在圆形轨道上运动的球组成,可以有效地减少光盘驱动器的不平衡振动。在适当的工作条件下,滚珠可以通过相对于磁盘的质心定位适当的角度来抵消磁盘的不平衡。这些特定位置称为完美平衡位置。正确的工作条件取决于完美平衡位置的稳定性。对于系统参数的某些特定值,已经做了很多工作来从数值上确定平衡位置的稳定性。相反,本文分析研究了几种条件下平衡位置的稳定性。首先构建装有两球自动平衡器的光盘驱动器的理论模型。理论模型的控制方程是使用拉格朗日方程推导的。给出了闭式公式和平衡位置的存在条件。进行实验以验证理论模型。每个平衡位置的稳定性由劳斯准则确定。最后,提出了关于平衡位置稳定性的一般准则。

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