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首页> 外文期刊>Journal of Mechanical Science and Technology >Optimal disk clamp design to minimize stress variation of disks in a hard disk drive
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Optimal disk clamp design to minimize stress variation of disks in a hard disk drive

机译:最佳磁盘夹设计,可最大程度减少硬盘驱动器中磁盘的应力变化

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摘要

To avoid disk waviness and warpage in a hard disk drive, it is desirable for the stress distribution on disks fastened to a spindle motor by a clamp to be uniform in the circumferential direction while sufficient clamping force is maintained. The objective of this work is to find a clamp configuration that minimizes the circumferential stress variation on the disks while maximizing the clamping force. Topology and shape optimization methods were employed to find the optimal clamp configuration. To facilitate the optimization problem, a model for the surface contact between the clamp and the top disk was simplified to a static model where the disk clamp and spring were connected. By incorporating the surface recess, the optimized clamp has equal stiffness in the circumferential direction, except for the four tooling hole areas. Numerical simulation confirmed that the optimized clamp reduced the stress variation by about 78% without sacrificing the clamping force; in fact, it increased the clamping force.
机译:为了避免硬盘驱动器中的磁盘起伏和翘曲,期望的是在通过夹具保持在主轴电动机上的磁盘上的应力分布在保持足够的夹持力的同时在圆周方向上是均匀的。这项工作的目的是找到一种夹具构造,该夹具构造可最大程度地减小磁盘上的圆周应力变化,同时又使夹持力最大化。采用拓扑和形状优化方法来找到最佳的夹具配置。为了解决优化问题,将夹具和顶部磁盘之间的表面接触模型简化为连接磁盘夹具和弹簧的静态模型。通过合并表面凹槽,优化的夹具在圆周方向上具有相同的刚度,除了四个工具孔区域。数值模拟结果表明,优化的夹具在不牺牲夹持力的情况下将应力变化降低了约78%。实际上,它增加了夹紧力。

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