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Effects of thrust hydrodynamic bearing stiffness and damping on disk-spindle axial vibration in hard disk drives

机译:推力流体动压轴承刚度和阻尼对硬盘驱动器中磁盘主轴轴向振动的影响

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摘要

This paper aims at investigating the effects of variations in thrust hydrodynamic bearing (HDB) parameters such as axial stiffness and damping coefficients on the axial vibration of disk-spindle systems in hard disk drives. For a parametric study, a closed-form axial frequency response function (FRF) of HDB spindle systems is derived as a function of the axial stiffness and damping coefficients of thrust HDBs. It is known that the axial vibration of the disk-spindle system is composed of two main parts: the vibration of the rigid hub in the axial direction and the disk deflection in the transverse direction. The results from this research clearly show that the vibration amplitudes at low frequency range is dominated by the axial vibration of the hub, and the amplitude of the unbalanced (0,0) mode is dominated by the disk deflection. The parametric study reveals that at low frequency range an increase in the bearing stiffness significantly reduces the hub axial vibration, and hence the axial vibration of the disk-spindle system. Surprisingly, a too much increase in the damping results in a higher amplitude of the unbalanced (0,0) mode. This is because a heavy damping constrains the hub vibration to nearly no motion, resulting in a direct transmission of vibration from the base to disk. To confirm the parametric study, a vibration test was performed on two HDB spindle motors with identical design but different fluid viscosity. The higher viscosity represents the higher axial stiffness and damping in the thrust bearing. The test result indicates that the spindle motor with higher viscosity has a larger unbalanced (0,0) mode amplitude when subjected to an axial base excitation.
机译:本文旨在研究推力流体动力轴承(HDB)参数的变化(例如轴向刚度和阻尼系数)对硬盘驱动器中磁盘主轴系统的轴向振动的影响。对于参数研究,HDB主轴系统的闭式轴向频率响应函数(FRF)是推力HDB的轴向刚度和阻尼系数的函数。已知盘-主轴系统的轴向振动由两个主要部分组成:刚性毂在轴向上的振动和盘在横向上的挠曲。这项研究的结果清楚地表明,低频范围内的振动幅度主要由轮毂的轴向振动决定,而不平衡(0,0)模式的幅度则由磁盘偏转决定。参数研究表明,在低频范围内,轴承刚度的增加显着降低了轮毂的轴向振动,从而减小了磁盘主轴系统的轴向振动。令人惊讶的是,阻尼的太大增加导致不平衡(0,0)模式的振幅更高。这是因为沉重的阻尼将轮毂的振动限制为几乎没有运动,从而导致振动从基座直接传递到磁盘。为了确认该参数研究,在两个设计相同但流体粘度不同的HDB主轴电机上进行了振动测试。较高的粘度表示推力轴承中较高的轴向刚度和阻尼。测试结果表明,具有较高粘度的主轴电动机在受到轴向基础励磁时具有较大的不平衡(0,0)模式振幅。

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