史宝军, 季家东, 杨廷毅. 粗糙度模式对硬盘气膜承载特性的影响[J]. 工程力学, 2012, 29(8): 313-318. DOI: 10.6052/j.issn.1000-4750.2010.12.0867
引用本文: 史宝军, 季家东, 杨廷毅. 粗糙度模式对硬盘气膜承载特性的影响[J]. 工程力学, 2012, 29(8): 313-318. DOI: 10.6052/j.issn.1000-4750.2010.12.0867
SHI Bao-jun, JI Jia-dong, YANG Ting-yi. EFFECTS OF SURFACE ROUGHNESS MODES ON LOAD CARRYING CHARACTERISTICS OF AIR BEARING FILMS IN HARD DISK DRIVES[J]. Engineering Mechanics, 2012, 29(8): 313-318. DOI: 10.6052/j.issn.1000-4750.2010.12.0867
Citation: SHI Bao-jun, JI Jia-dong, YANG Ting-yi. EFFECTS OF SURFACE ROUGHNESS MODES ON LOAD CARRYING CHARACTERISTICS OF AIR BEARING FILMS IN HARD DISK DRIVES[J]. Engineering Mechanics, 2012, 29(8): 313-318. DOI: 10.6052/j.issn.1000-4750.2010.12.0867

粗糙度模式对硬盘气膜承载特性的影响

EFFECTS OF SURFACE ROUGHNESS MODES ON LOAD CARRYING CHARACTERISTICS OF AIR BEARING FILMS IN HARD DISK DRIVES

  • 摘要: 当前硬盘中磁头磁盘之间气膜的厚度已经接近或低于分子平均自由程,在这种情况下表面粗糙度及气体稀薄效应的影响不容忽视.应用最小二乘有限差分法,求解考虑气体稀薄效应并引入压力流因子和剪切流因子的量纲一雷诺方程,研究了不同粗糙度模式下硬盘超低飞高(1nm~2nm)气膜的承载特性.数值结果表明:粗糙度模式对超低飞高气膜压力分布及承载力的影响较大,而对压力中心的影响较小;在各种粗糙度模式情形下,磁头取横向粗糙度模式时,可使气膜压力分布升高,并提高气膜的承载力.

     

    Abstract: The surface roughness and the gaseous rarefaction effects must be taken into account in the case when the thickness of air bearing film in modern hard disk drives (HDDs) is close to or less than the molecular-mean free path. Considering gaseous rarefaction and surface roughness effects by including the pressure flow and shear flow factors, a generalized non-dimensional Reynolds equation is solved by using a least square finite difference (LSFD) method. Effects of the surface roughness modes on the load carrying characteristics of air bearing films in HDDs with ultra-low flying heights (1-2 nanometres) are investigated. Numerical results show that the effects of the surface roughness modes on the pressure distributions and the load carrying capacity are obvious, while those on the pressure center are weak. It will increase the pressure distribution and the load carry capacity of the air bearing films for the head with transverse roughness among various surface roughness modes.

     

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