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Analysis of flying characteristics of magnetic heads with ultra-thin spacings based on the Boltzmann equation

机译:基于玻尔兹曼方程的超薄磁头飞行特性分析

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摘要

Numerical analyses of flying characteristics of magnetic heads for magnetic disk storage with ultrathin spacings are presented, applying the general lubrication equation based on the Boltzmann equation as an exact solution. The analyses are then compared with those using the slip flow approximation equations with accommodation coefficients of momentum. For conventional magnetic heads with nominal submicron spacings, differences between flying characteristics based on the generalized equation and the approximation equation are not necessarily significant (10% or less). This can explain why the experimental results agree well with numerical solutions based on a slip flow approximation. The differences for small heads with ultrathin spacings (less than 0.1 mu m) can be more than 20%, indicating that for such heads the generalized lubrication equation based on the Boltzmann equation should be used to predict the flying characteristics for slider designs.
机译:提出了一种基于超薄间距的磁盘存储磁头飞行特性的数值分析方法,并以基于玻尔兹曼方程的一般润滑方程为精确解。然后将这些分析与使用具有动量调节系数的滑流近似方程的分析进行比较。对于具有标称亚微米间距的常规磁头,基于广义方程和近似方程的飞行特性之间的差异不一定显着(10%或更少)。这可以解释为什么实验结果与基于滑流近似的数值解很好地吻合。具有超薄间距(小于0.1微米)的小磁头的差异可能超过20%,这表明对于此类磁头,应使用基于Boltzmann方程的通用润滑方程式来预测滑块设计的飞行特性。

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