首页> 外文会议>19th Biennial Conference on Mechanical Vibration and Noise >DYNAMIC ANALYSIS OF THE OPTICAL DISK DRIVE SYSTEM EQUIPPED WITH AN AUTOMATIC BALL BALANCER WITH CONSIDERATION OF TORSIONAL MOTION
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DYNAMIC ANALYSIS OF THE OPTICAL DISK DRIVE SYSTEM EQUIPPED WITH AN AUTOMATIC BALL BALANCER WITH CONSIDERATION OF TORSIONAL MOTION

机译:考虑了扭转运动的装有自动平衡球的光碟驱动系统的动力学分析

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This study is dedicated to evaluate the stability of an automatic ball-type balance system (ABS) installed in Optical Disk Drives (ODD). There have been researchers devoted to study the performance of ABS by investigating the dynamics of the system, but few consider the motions in torsional direction of ODD foundation. To solve this problem, a mathematical model including the foundation is established. The method of multiple scales is then utilized to find all possible steady-state solutions and perform related stability analysis. The obtained results are used to predict the level of residual vibrations and then the performance of the ABS can be evaluated. Numerical simulations are conducted to verify the theoretical results. It is obtained from both analytical and numerical results that the spindle speed of the motor ought to be operated above primary translational and secondary torsional resonances to stabilize the desired steady-state solutions for a substantial reduction in radial vibration.
机译:这项研究致力于评估安装在光盘驱动器(ODD)中的自动球形平衡系统(ABS)的稳定性。已经有研究人员致力于通过研究系统的动力学来研究ABS的性能,但是很少有人考虑ODD基础在扭转方向上的运动。为了解决这个问题,建立了包括基础的数学模型。然后使用多尺度方法来找到所有可能的稳态解并执行相关的稳定性分析。获得的结果用于预测残余振动的程度,然后可以评估ABS的性能。进行了数值模拟以验证理论结果。从分析和数值结果中都可以得出,电动机的主轴转速应在一次平移和二次扭转共振以上运行,以稳定所需的稳态解,以显着降低径向振动。

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