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Exploration of vibro-acoustic characteristics of HDD spindle motors using electro-magnetic frequency-swept excitation

机译:利用电磁扫频激励探索HDD主轴电机的振动声特性

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In this paper, an approach of modal testing to investigate the vibro-acoustic characteristics of a three-phase motor with fluid dynamic bearings used in hard disk drives (HDD) is proposed. The motor is excited by varying the frequency of the electrical current input on one of the three phases to ensure constant amplitudes of electromagnetic (EM) excitations for all various audible frequencies. Compared with the conventional mechanical excitation, the EM excitation is more relevant to the actual EM forces which are the major source of acoustic noises in the motor operation. With the proposed EM-excitation method, the frequency response functions (FRFs) between the measured mechanical vibrations at exterior of the motor structure and the motor current input were obtained with good repeatability. The vibro-acoustic resonances of the motor and their corresponding mode shapes were determined from both the experimental FRFs and the sound spectra of the running motor. The results clearly show the critical vibro-acoustic modes that 'induce the acoustic noises in HDD motor.
机译:本文提出了一种模态测试方法,以研究用于硬盘驱动器(HDD)的带有流体动力轴承的三相电动机的振动声特性。通过改变在三相之一上输入的电流的频率来激励电动机,以确保所有各种可听频率的电磁(EM)激励幅度恒定。与传统的机械励磁相比,电磁励磁与实际的电磁力更为相关,而实际的电磁力是电动机运行中主要的噪声源。利用所提出的EM激励方法,获得了在电机结构外部测得的机械振动与电机电流输入之间的频率响应函数(FRF),具有良好的可重复性。电机的振动声共振及其相应的振型由实验FRF和运行中的电机的声谱确定。结果清楚地表明了关键的振动声模式,这些模式会在HDD电机中产生声噪声。

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