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Optimization of 3.5-in. HDD spindle motors for OP-vibration performance: theoretical prediction and experimental verification

机译:优化3.5英寸用于OP振动性能的HDD主轴电机:理论预测和实验验证

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摘要

The purpose of this paper is to optimize OP-vibration performance of 3.5-in. hard disk drive (HDD) spindle motors through theoretical prediction and experimental verification. OP-vibration performance of HDD is closely related to the first rocking vibration of spindle motors because excited frequencies of 3.5-in. HDD from the environment are mostly below 500 Hz and the first rocking vibration is the only resonance in the corresponding frequencies. Therefore, minimizing first rocking vibration leads to improve OP-vibration performance of the spindle motors. In order to minimize the first rocking vibration key parameters of FDB spindle motors were selected from a previous work done by Heo and Shen (Microsyst Technol 11:1204-1213, 2005). Then, the selected parameters have been optimized to minimize the first rocking vibration through a theoretical model developed at University of Washington. Then, experiments with ten prototype FDB spindle motors have been conducted to verify the theoretical results. Each prototype motor has different spindle parameter configurations including bearing coefficients, bearing locations, and center of gravity location, etc. Also, this paper demonstrated that radial measurements of spindle rocking vibration have better correlation with OP-vibration performance than axial measurements through PES measurements. Finally, the optimized design has been manufactured by a motor maker and has also successfully verified the theoretical prediction experimentally.
机译:本文的目的是优化3.5英寸的OP振动性能。硬盘驱动器(HDD)主轴电机通过理论预测和实验验证。 HDD的OP振动性能与主轴电机的第一个摇摆振动密切相关,因为其激励频率为3.5英寸。来自环境的HDD大多低于500 Hz,并且第一次摇摆振动是相应频率下的唯一共振。因此,使第一摇摆振动最小化导致主轴电动机的OP振动性能提高。为了使第一摇摆振动最小,从Heo和Shen(Microsyst Technol 11:1204-1213,2005)的先前工作中选择了FDB主轴电机的关键参数。然后,通过华盛顿大学开发的理论模型对选定的参数进行了优化,以最大程度地减小第一次摇摆振动。然后,用十个原型FDB主轴电机进行了实验,以验证理论结果。每个原型电动机都有不同的主轴参数配置,包括轴承系数,轴承位置和重心位置等。此外,本文还证明,与通过PES测量进行轴向测量相比,径向测量主轴摇摆振动与OP振动性能具有更好的相关性。最后,优化的设计已经由电机制造商制造,并且还通过实验成功地验证了理论预测。

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