Optimal arm configuration to reduce arm bending resonance-induced off-track in a hard disk drive

Woo-Sung Kim, Yong-Han Song, W. Kim, Chulwoo Lee
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Abstract

In order to reduce the off-track due to the arm bending mode, whose effect is considerable in a high capacity drive, an arm configuration with maximum arm bending stiffness should be considered. The objective of this work is to find the optimal arm configuration that maximizes the arm bending stiffness subject to the constraint imposed on the moment of inertia of the arm. Herein, the problem of finding the optimal arm configuration maximizing the arm bending stiffness is formulated as a topology optimization for eigenvalue maximization problem. By applying this method, an arm configuration having two balance holes instead of a single balance hole was obtained. Finally, the efficacy of the optimized arm is verified by measuring the position error signal (PES) of actual sample drives; when the optimized arm was used, the PES was reduced by 25%.
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优化手臂配置,以减少手臂弯曲共振引起的偏离轨道在硬盘驱动器
在大容量驱动中,由于臂弯方式的影响是相当大的,为了减少臂弯方式造成的偏轨,应考虑臂弯刚度最大的臂型。这项工作的目的是找到最优的手臂配置,最大限度地提高手臂的弯曲刚度受约束的惯性矩的手臂。在此基础上,将臂型优化求解问题转化为特征值最大化的拓扑优化问题。通过应用该方法,得到了具有两个平衡孔而不是单个平衡孔的臂形。最后,通过测量实际样品驱动器的位置误差信号(PES)来验证优化臂的有效性;当使用优化臂时,PES降低了25%。
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