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Study on flow-induced vibration of head–disk assembly mechanisms in actual hard disk drive

机译:实际硬盘驱动器中磁头-磁盘装配机构的流致振动研究

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摘要

Achieving ultra-high magnetic-recording density in hard disk drives (HDDs) requires clarification of flow-induced vibration issues. In particular, it is necessary to reduce the flow-induced disk vibration called disk flutter. Thus far, however, there has been no experimental research related to disk flutter in actual HDDs. For this study, therefore, the disk-flutter issues have been studied experimentally, using an actual 2.5-in. HDD with one disk and two magnetic heads. The aim was to study the effect of operating magnetic-head mechanisms on flow-induced disk flutter. This study evaluated disk flutter as well as static pressure distribution in the actual HDD, by taking measurements while changing the operating modes of the magnetic-head mechanism as well as the number of operating air-bearing sliders. The study demonstrated that the disk-flutter amplitude increases and its frequency decreases when the magnetic-head mechanisms are operating. It was also found that the amount of decrease in the disk-flutter frequency depends on the number of operating air-bearing sliders whose amplitude increase varies with the specific operating mode of the head mechanisms, such as whether it is in track-following or seek modes. In addition, operation of the magnetic-head mechanisms generated non-uniform static pressure distribution within the HDD. These factors suggest that a decrease in disk-flutter frequency results from the slider-coupled vibration and an increase in disk-flutter amplitude results from the static pressure changes as well as air-following changes, as these vary with the actual operation of the disk head mechanism. From these experimental results, it appears that the disk-flutter issues in actual HDDs should be considered as a system that includes the operation of the magnetic-head mechanisms and disk-coupled vibration.
机译:要在硬盘驱动器(HDD)中实现超高的磁记录密度,需要弄清流量引起的振动问题。特别地,有必要减小被称为盘颤振的流动引起的盘振动。但是,到目前为止,还没有与实际HDD中的磁盘抖动相关的实验研究。因此,对于本研究,已经使用实际的2.5英寸实验研究了磁盘颤振问题。具有一个磁盘和两个磁头的HDD。目的是研究操作磁头机构对流动引起的磁盘颤动的影响。这项研究通过在改变磁头机构的操作模式以及空气轴承滑块数量的同时进行测量,评估了磁盘抖动以及实际硬盘中的静压分布。研究表明,当磁头机构工作时,磁盘颤振幅度增加而频率降低。还发现,磁盘颤振频率的减少量取决于操作的空气轴承滑块的数量,这些滑块的振幅增加会随着磁头机构的特定操作模式而变化,例如它是在轨迹跟随还是在寻道中。模式。另外,磁头机构的操作在HDD内产生了不均匀的静压分布。这些因素表明,磁盘滑块频率的降低是由滑块耦合的振动引起的,而磁盘抖动幅度的增加是由静压变化以及空气跟随的变化引起的,因为这些随磁盘的实际操作而变化头部机制。从这些实验结果来看,似乎应该将实际HDD中的磁盘颤动问题视为一个包括磁头机构操作和磁盘耦合振动的系统。

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  • 来源
    《Microsystem Technologies》 |2007年第10期|767-775|共9页
  • 作者单位

    Graduate School of Engineering Kansai University 887-2 Yoshino Maizuru-shi Kyoto 625-0003 Japan;

    Kyocera Mita Co. Ltd. 1-2-28 Tamatsukuri Chuoh-ku Osaka 540-8585 Japan;

    Panasonic Shikoku Electronics Co. Ltd. 2131-1 Minamigata Toon Ehime 791-0395 Japan;

    Panasonic Shikoku Electronics Co. Ltd. 2131-1 Minamigata Toon Ehime 791-0395 Japan;

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