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Application of Rarefied Gas Dynamics to the Head-Disk Interface in Hard Disk Drives.

机译:稀有气体动力学在硬盘驱动器头磁盘接口中的应用。

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摘要

To compete with solid state drives (SSDs), hard disk drives (HDDs) must improve their performance in capacity, speed and reliability, which requires the spacing between the magnetic disk, used to store information, and the magnetic transducer, used to read information from and write information onto the disk, to decrease. This distance is now approaching 5nm, and, accordingly, the distance between a slider, embedding the transducer, and the disk ranges from several nanometers to several micrometers, which makes the gas flowing between the slider and the disk rarefied. This dissertation applies rarefied gas dynamics to investigate several issues related to HDDs' performance.;Particle contamination on the slider may scratch the disk and induce loss of data. An improved model is proposed to numerically study particle contamination on a thermal flying-height control (TFC) slider, which adjusts the transducer-disk spacing by use of a small heater embedded in the slider near the transducer. It is found that the currently used model is sufficiently accurate despite its simple form.;The temperature increase inside HDDs during operation may affect their reliability. This dissertation derives an analytical formula for the gas-flow induced shear force in the head-disk interface (HDI) and uses it to investigate how the raised temperature affects the slider's flying attitude and the shear forces on the slider and the disk.;Numerical prediction of a TFC slider's flying performance lays the foundation for commercial designs of TFC sliders. An improved model is proposed to calculate the heat flux on the TFC slider and it is found that the currently used model is accurate enough for this purpose. Finally, a general approach is proposed to numerically investigate a TFC slider flying in gas mixtures.
机译:为了与固态驱动器(SSD)竞争,硬盘驱动器(HDD)必须在容量,速度和可靠性方面提高性能,这需要在用于存储信息的磁盘和用于读取信息的磁传感器之间保持间距。从磁盘上写入信息以减少磁盘数量。现在,该距离接近5nm,因此,嵌入换能器的滑块与磁盘之间的距离范围从几纳米到几微米,这使得滑块与磁盘之间流动的气体稀少。本文运用稀有气体动力学研究了与硬盘性能有关的若干问题。滑块上的颗粒污染可能会划伤磁盘并导致数据丢失。提出了一种改进的模型来对热飞行高度控制(TFC)滑块上的颗粒污染进行数值研究,该滑块通过使用嵌入换能器附近的滑块中的小型加热器来调节换能器盘间距。发现目前使用的模型尽管形式简单,但仍足够准确。操作期间HDD内部的温度升高可能会影响其可靠性。本文推导了磁头-磁盘界面(HDI)中气流引起的剪切力的解析公式,并利用它来研究温度升高如何影响滑块的飞行姿态以及滑块和磁盘上的剪切力。对TFC滑块的飞行性能的预测为TFC滑块的商业设计奠定了基础。提出了一种改进的模型来计算TFC滑块上的热通量,并且发现当前使用的模型对于此目的足够准确。最后,提出了一种通用方法来对气体混合物中飞行的TFC滑块进行数值研究。

著录项

  • 作者

    Liu, Nan.;

  • 作者单位

    University of California, Berkeley.;

  • 授予单位 University of California, Berkeley.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 103 p.
  • 总页数 103
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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