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Effect of various physical factors on thin lubricant film migration on the flying head slider at the head-disk interface of hard disk drives

机译:各种物理因素对硬盘驱动器磁头-磁盘接口上的浮动磁头滑块上的薄润滑剂膜迁移的影响

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The mechanism of lubricant migration on a flying slider's air bearing surface in magnetic hard disk drives is examined in this paper. As the head-disk spacing diminishes, the lubricant contamination from the disk and its migration behavior on the flying head slider becomes an increasing concern. The spatiotemporal behavior of the thin lubricant film on a slider surface is complicated, and it is affected by many physical factors. We investigate the contributions and functionalities of the potentially related physical factors and parameters on the lubricant film dynamics by numerical simulation. The analysis results show that the air bearing shear stress is the primary driving force in the lubricant migration, while the air bearing pressure makes only a minor contribution. The relative strength and direction of the Couette and Poiseuille flow components of the air bearing shear stress govern the lubricant migration direction and the points of lubricant stagnation. The lubricant surface free energy plays an important role while the contribution of diffusion is relatively small through the Laplace pressure but relatively large through the lubricant disjoining pressure which is determined by the surface energy gradient. We also find that the lubricant viscosity affects the lubricant dynamics as a time scaling factor. These results reveal the underlying physical framework of the complex phenomena and provide useful insight for developing the head disk interface of magnetic disk drives.
机译:本文研究了润滑剂在磁性硬盘驱动器中浮动滑块的空气轴承表面上的迁移机理。随着磁头-磁盘间距的减小,磁盘上的润滑剂污染及其在浮动磁头滑块上的迁移行为变得越来越重要。滑子表面上的润滑膜薄膜的时空行为很复杂,并且受许多物理因素的影响。我们通过数值模拟研究了可能相关的物理因素和参数对润滑膜动力学的贡献和功能。分析结果表明,空气轴承的剪切应力是润滑剂迁移的主要驱动力,而空气轴承的压力只占很小的比例。空气轴承剪切应力的Couette和Poiseuille流动分量的相对强度和方向决定着润滑剂的迁移方向和润滑剂的停滞点。润滑剂表面自由能起着重要的作用,而扩散的贡献在拉普拉斯压力下相对较小,而在通过表面能梯度确定的润滑剂分离压力下则相对较大。我们还发现,润滑剂粘度会影响润滑剂动力学(作为时间缩放因子)。这些结果揭示了复杂现象的潜在物理框架,并为开发磁盘驱动器的磁头接口提供了有用的见识。

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