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Topology optimization of actuator arms in hard disk drives for reducing bending resonance-induced off-tracks

机译:硬盘驱动器执行器臂的拓扑优化,以减少弯曲共振引起的磁道偏离

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摘要

The objective of this work is to find an optimal actuator arm configuration in hard disk drives (HDD’s) for sufficiently small arm bending-induced off-track error by maximizing the fundamental eigenfrequency of arm bending modes subject to a constraint on the mass moment of inertia of arms. By applying the topology optimization method for the purpose, an arm configuration having two balancing holes instead of a single balancing hole in conventional designs was obtained. It is numerically shown that an optimized arm configuration substantially increases the arm bending resonant frequency with little change in the mass moment of inertia of arms in comparison with conventional designs having a single balancing hole. Finally, the performance of an optimized actuator arm is verified by showing that the eigenfrequencies associated with arm bending modes are increased by about 100 Hz and the off-track error by measuring the position error signal (PES) from actual sample drives can be reduced by as much as 25%.
机译:这项工作的目的是通过最大化受惯性质量矩约束的臂弯曲模式的本征频率,在硬盘驱动器(HDD)中找到最佳的致动器臂配置,以使臂弯曲引起的偏离磁道误差足够小的武器。通过为此目的应用拓扑优化方法,获得了在传统设计中具有两个平衡孔而不是单个平衡孔的臂构造。从数值上显示出,与具有单个平衡孔的常规设计相比,优化的臂构造实质上增加了臂弯曲共振频率,而臂的惯性矩几乎没有变化。最后,通过显示出与臂弯曲模式相关的本征频率增加了约100 Hz,并且通过测量来自实际样本驱动器的位置误差信号(PES)可以减少磁道偏离误差,从而验证了优化的致动器臂的性能。高达25%

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