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Robust shaft design to compensate deformation in the hub press-fitting and disk clamping process of 2.5aEuro(3) HDDs

机译:坚固的轴设计可补偿2.5aEuro(3)HDD的轮毂压配合和磁盘夹紧过程中的变形

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摘要

We investigated deformation of the outer diameter of a shaft due to the hub press-fitting and disk clamping processes associated with a 2.5aEuro(3) hard disk drive. We propose a new robust shaft design to minimize the effect of deformation on the outer diameter of the shaft. We numerically show the effect of deformation on the shaft due to the pressure, stiffness, and damping coefficients of fluid dynamic bearings (FDBs), and the critical mass and excitation response of the rotor-bearing system. We also experimentally measured the axial non-repeatable runout and the amplitude at the half speed whirl frequency of FDBs with both conventional and proposed designs. Through these tests we confirm that the proposed design improves the static and dynamic performance of the FDBs and rotor-bearing system.
机译:我们研究了由于轮毂压配合和与2.5aEuro(3)硬盘驱动器相关的磁盘夹持过程而导致的轴外径变形。我们提出了一种新的坚固的轴设计,以最大程度地减少变形对轴外径的影响。我们用数字显示了由于动压轴承(FDB)的压力,刚度和阻尼系数以及转子轴承系统的临界质量和励磁响应而引起的变形对轴的影响。我们还通过实验和常规设计测量了FDB的轴向不可重复跳动和半速旋转频率下的振幅。通过这些测试,我们确认所提出的设计可以改善FDB和转子轴承系统的静态和动态性能。

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