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Numerical simulation of molecularly thin lubricant film flow due to the air bearing slider in hard disk drives

机译:硬盘驱动器中空气轴承滑块导致的分子润滑膜流动的数值模拟

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In this paper we numerically study the evolution of depletion tracks on molecularly thin lubricant films due to a flying head slider in a hard disk drive. Here the lubricant thickness evolution model is based on continuum thin film lubrication theory with inter-molecular forces. Our numerical simulation involves air bearing pressure, air bearing shear stress, Laplace pressure, the dispersive component of surface free energy and disjoining pressure, a polynomial modeled polar component of surface free energy and disjoining pressure and shear stress caused by the surface free energy gradient. Using these models we perform the lubricant thickness evolution on the disk under a two-rail taper flat slider. The results illustrate the forming process of two depletion tracks of the thin lubricant film on the disk. We also quantify the relative contributions of the various components of the physical models. We find that the polar components of surface free energy and disjoining pressure and the shear stress due to the surface free energy gradient, as well as other physical models, play important rolls in thin lubricant film thickness change.
机译:在本文中,我们通过数值研究了由于硬盘驱动器中的浮动磁头滑块而导致的分子润滑膜上的耗尽轨迹的演变。在此,润滑剂厚度演变模型基于具有分子间作用力的连续薄膜润滑理论。我们的数值模拟涉及空气轴承压力,空气轴承剪切应力,拉普拉斯压力,表面自由能和解离压力的色散分量,表面自由能的多项式建模极性分量以及由表面自由能梯度引起的解离压力和切应力。使用这些模型,我们在两轨锥度平面滑块下在磁盘上执行润滑剂厚度变化。结果说明了磁盘上润滑剂薄膜的两个耗尽轨迹的形成过程。我们还量化了物理模型各个组成部分的相对贡献。我们发现,由于表面自由能梯度引起的表面自由能和解离压力以及剪切应力的极性成分,以及其他物理模型,在薄润滑剂膜厚度变化中起着重要作用。

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