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Modal contribution analysis of an operating complete flexible HDD affecting the head-disk motion due to shock

机译:运行完整的灵活硬盘驱动器的模态影响分析,该硬盘驱动器会因冲击而影响磁头磁盘的运动

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This paper proposes a finite element modal and shock analysis of an operating complete flexible hard disk drive (HDD). It develops a finite element model of a complete flexible HDD including the spinning disk-spindle system with fluid dynamic bearings, the head-suspension-actuator with pivot bearings and air bearings, the base plate and cover with complicated geometry. The finite element model also includes a mounting table, which is a tetrahedron element with big mass, to simulate the shock to the HDD from the exciter. It performs the modal analysis to calculate the natural frequencies and mode shapes as well as the mode superposition to calculate the motion between head and disk. It proposes a method to determine the contribution of each superposed vibration mode to the head-disk motion of an operating complete flexible HDD due to shock. It also proposes the numerical criterion to determine the head crash due to shock, and it is applied to investigate the contribution of each vibration mode to the head-disk motion when the head-crash occurs. It shows that the coupled (0,0) disk modes play the dominant role on the head-disk motion and that the pure disk modes have no effect on the head-disk motion under the axial shock. The proposed method can be effectively applied to investigate the dynamics of a HDD and to design a robust HDD against shock to prevent the head-crash.
机译:本文提出了一个运行完整的柔性硬盘驱动器(HDD)的有限元模态和冲击分析。它开发了一个完整的柔性硬盘驱动器的有限元模型,包括带有流体动力轴承的旋转盘-主轴系统,带有枢轴轴承和空气轴承的头悬架执行器,具有复杂几何形状的基板和盖。有限元模型还包括一个安装台,该安装台是质量较大的四面体单元,用于模拟激振器对HDD的冲击。它执行模态分析以计算固有频率和模态形状,以及模态叠加以计算磁头和磁盘之间的运动。它提出了一种确定每个叠加振动模式对正在运行的完整柔性硬盘驱动器的磁盘运动因冲击而产生的影响的方法。它也提出了数值标准来确定由于冲击而引起的磁头碰撞,并且它被用于研究当磁头碰撞发生时每个振动模式对磁头-磁盘运动的贡献。它表明耦合的(0,0)磁盘模式在磁头磁盘运动中起主要作用,而纯磁盘模式在轴向冲击下对磁头磁盘运动没有影响。所提出的方法可以有效地应用于研究硬盘的动力学,并设计出一种坚固的硬盘以防冲击,以防止磁头碰撞。

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