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EFFECTS OF DIFFUSION ON LUBRICANT DISTRIBUTION UNDER FLYING HEAD ON THIN-FILM DISKS

机译:扩散对薄盘飞行头下润滑剂分布的影响

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Lubricants on thin-film disks have large effects on head-disk interface characteristics. They reduce head and disk wear while thick lubricant film increases friction force between them and lubricant transfer onto head surfaces. Therefore, we have to know the lubricant behavior in many cases. Lubricant depletion due to disk rotation has been studied very well. However, the effects of flying heads have not been understood systematically until now. We developed a simulation program to numerically calculate the change in lubricant thickness under a flying head on a thin-film magnetic disk. The program included the effects of centrifugal force, shear stress from the air due to disk rotation with a flying head, and the effect of lubricant diffusion. We first calculated a change in lubricant thickness under a flying head using previously published data without the effect of diffusion. Calculated results showed fairly good agreement with the published experimental data with very high peaks on both sides of the flying head rails. With the introduction of diffusion effects, these peaks became moderate and the calculated result agreed very well with the experimental data. The coefficient of diffusion obtained to best fit to the experimental data was close to that reported in a literature. We analyzed the effects of air shear stress patterns under flying head on the change in lubricant distribution. We found that the side shapes had large effect on the distribution. We also confirmed that our program could calculate lubricant depletion on rotating disks without a flying head.
机译:薄膜磁盘上的润滑剂对磁头磁盘接口特性有很大的影响。它们减少了磁头和磁盘的磨损,同时厚厚的润滑膜增加了它们之间的摩擦力,并且润滑剂转移到磁头表面上。因此,在许多情况下,我们必须了解润滑剂的行为。圆盘旋转引起的润滑剂消耗已得到很好的研究。但是,到目前为止,还没有系统地了解飞头的作用。我们开发了一个模拟程序,以数字方式计算薄膜磁盘上飞扬头下润滑剂厚度的变化。该程序包括离心力的影响,由于带有飞头的磁盘旋转而导致的空气剪切应力以及润滑剂扩散的影响。我们首先使用先前发布的数据计算了飞扬头下润滑剂厚度的变化,而没有扩散的影响。计算结果表明,与已发布的实验数据非常吻合,在飞轨的两侧都有很高的峰值。随着扩散效应的引入,这些峰变得中等,计算结果与实验数据非常吻合。获得的最适合实验数据的扩散系数接近文献报道的扩散系数。我们分析了飞扬头下的空气剪切应力模式对润滑剂分布变化的影响。我们发现侧面形状对分布有很大影响。我们还证实了我们的程序可以计算没有飞头的旋转盘上的润滑剂消耗。

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