您的位置: 专家智库 > >

国家自然科学基金(51275124)

作品数:2 被引量:0H指数:0
相关作者:陈漪敖宏瑞姜洪源董明更多>>
相关机构:哈尔滨工业大学更多>>
发文基金:国家自然科学基金黑龙江省留学归国人员基金更多>>
相关领域:自动化与计算机技术更多>>

文献类型

  • 2篇中文期刊文章

领域

  • 2篇自动化与计算...

主题

  • 1篇影响因素
  • 1篇热传导
  • 1篇轴承
  • 1篇空气轴承
  • 1篇STORAG...
  • 1篇TFC
  • 1篇DE
  • 1篇DISK
  • 1篇HEAD
  • 1篇INTERF...
  • 1篇磁头
  • 1篇LUBRIC...

机构

  • 1篇哈尔滨工业大...

作者

  • 1篇董明
  • 1篇姜洪源
  • 1篇敖宏瑞
  • 1篇陈漪

传媒

  • 1篇物理学报
  • 1篇Chines...

年份

  • 1篇2016
  • 1篇2014
2 条 记 录,以下是 1-2
排序方式:
基于多物理场的TFC磁头热传导机理及其影响因素仿真研究
2014年
为了利用微尺度热效应的热致飞高控制(TFC)磁头技术实现磁头飞行高度的精确控制,分析了工作状态下TFC滑块在多物理场综合作用下所呈现出来的传热特性及其主要影响因素,考虑了磁头磁盘间超薄气膜的稀薄效应,建立滑块导热、空气轴承表面传热、气膜流动等模型,利用有限元法,对磁头热变形作用机理及热传导特性对滑块动力学特性影响进行了仿真研究,结果表明,建立的传热模型及对雷诺方程的修正适用于求解磁头磁盘界面气膜传热问题和磁头滑块的动力学问题;影响滑块热力学性能的因素主要可以归结为加热器高度、热生成率以及材料的传热系数;空气轴承力及工作表面热变形的双重作用决定了滑块飞行高度的改变.仿真结果为磁头滑块加热器的设计及空气轴承动力学特性分析提供了依据.
敖宏瑞陈漪董明姜洪源
关键词:热传导空气轴承
Lubricant film flow and depletion characteristics at head/disk storage interface
2016年
The characteristics of lubricant film at head/disk interface (HDI) are essential to the stability of hard disk drives. In this study, the theoretical models of the lubricant flow and depletion are deduced based on Navier-Stokes (NS) and continuity equations. The air bearing pressure on the surface of the lubrication film is solved by the modified Reynolds equation based on Fukui and Kaneko (FK) model. Then the lubricant film deformations for a plane slider and double-track slider are obtained. The equation of lubricant film thickness is deduced with the consideration of van der Waals force, the air bearing pressure, the surface tension, and the external stresses. The lubricant depletion under heat source is simulated and the effects of different working conditions including initial thickness, flying height and the speed of the disk on lubricant depletion are discussed. The main factors that cause the lubricant flow and depletion are analyzed and the ways to reduce the film thickness deformation are proposed. The simulation results indicate that the shearing stress is the most important factor that causes the thickness deformation and other terms listed in the equation have little influence. The thickness deformation is dependent on the working parameter, and the thermal condition evaporation is the most important factor.
敖宏瑞韩志英张凯姜洪源
共1页<1>
聚类工具0