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Numerical Analysis of Surface Force of Diamond-Like Carbon Surface Coated with Monolayer Lubricant Film

机译:单层润滑膜覆盖类金刚石碳表面的表面力数值分析

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摘要

Diamond-like carbon (DLC) is widely used as a hard, protective layer with a relatively low surface energy. In the head?disk interface in magnetic disk drives, however, the DLC layer is coated with a monolayer perfluoropolyether lubricant with a high bond ratio to avoid DLC?DLC contact and to secure head/disk wear reliability. In this study, we theoretically analyzed the effect of lubricant thickness and bond ratio on the adhesion force between the head?disk interface (HDI) in a mono/submono-layer thickness regime. It was found that the adhesion force had the lowest sensitivity to lubricant thickness variations at a 0.85 bond ratio. In addition, the maximum adhesion force was minimized when the lubricant thickness was ~0.6 nm for the measured parameter values of the HDI. This suggests that the current lubricant thickness of 1.0–1.2 nm can be reduced to 0.6 nm, accompanied by a slight decrease in the adhesion force and a slight increase in the resistance against any variation in its thickness. This tribo-surface-modification concept can be applied to surface-modification coatings in other fields such as microano-electromechanical systems. The compatibility of the theoretical surface energy function with experimental data indicates the validity and consistency of this theory.
机译:类金刚石碳(DLC)被广泛用作具有较低表面能的硬质保护层。但是,在磁盘驱动器的磁头-磁盘接口中,DLC层涂有单层全氟聚醚润滑剂,其粘结率高,可以避免DLC-DLC接触并确保磁头/磁盘的磨损可靠性。在这项研究中,我们从理论上分析了在单层/亚单层厚度范围内,润滑剂厚度和粘结比对磁头-磁盘界面(HDI)之间粘附力的影响。已经发现,在0.85的粘合比下,粘合力对润滑剂厚度变化的敏感性最低。另外,对于HDI的测量参数值,当润滑剂厚度为〜0.6 nm时,最大粘附力最小。这表明当前的润滑剂厚度为1.0-1.2 nm可以减小到0.6 nm,同时粘附力略有降低,并且抵抗厚度变化的阻力也略有增加。这种摩擦表面改性的概念可以应用于其他领域的表面改性涂层,例如微/纳米机电系统。理论表面能函数与实验数据的相容性表明了该理论的有效性和一致性。

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