【24h】

RUPTURE AND REFORMATION OF ULTRA-THIN SURFACE FILMS

机译:超薄表面膜的破裂和变形

获取原文
获取原文并翻译 | 示例

摘要

In lubricated contact conjunctions film ruptures close to the exit boundary. This significantly affects the load carrying capacity and can lead to direct surface interactions. Nano-scale films (several molecular diameters of the lubricant) are no exception, a fact that has been observed using ellipsometry studies for ultra-thin film conjunctions representative for high storage capacity hard disk drives. Immediately beyond the film rupture an area of cavitation occurs and the continuity of flow condition is breached. It has been shown that for molecularly smooth surfaces solvation effect becomes dominant. This means that the contact exit is subject to discrete drainage of lubricant and may be devoid of a sufficient lubricant for film reformation to occur. This can be a stumbling block in an increasing quest to increase the data storage density of hard disk drives. Wear can become a problem as well as non-uniformity of free surface film at the inlet meniscus. It has been noted that peaks of lubricant can gather in some places, a phenomenon referred to as lubricant mogul. These localized piles of lubricant can exceed the nominally aimed for lubricant film thickness necessary for a given data storage level. This paper carries out an in-depth prediction of ultra thin film lubricant behavior through the contact. Hydro-dynamic as well as near surface effects and intermolecular interactions responsible for the supply, formation, cavitation and reformation of thin films in the slider-disk conjunction have been considered.
机译:在润滑的接触接头中,薄膜在靠近出口边界处破裂。这会显着影响承载能力,并可能导致直接的表面相互作用。纳米级膜(润滑剂的几个分子直径)也不例外,使用椭圆光度法研究代表了高存储容量硬盘驱动器的超薄膜结合体,这一事实已经被观察到。紧随薄膜破裂之后立即出现气穴现象,破坏了流动条件的连续性。已经表明,对于分子光滑的表面,溶剂化作用占主导。这意味着触点出口会不连续地排干润滑剂,并且可能没有足够的润滑剂来进行膜重整。这可能是增加硬盘驱动器数据存储密度的越来越大的绊脚石。磨损可能会成为问题,并且入口弯月面的自由表面薄膜会变得不均匀。已经注意到,润滑剂的峰会聚集在某些地方,这种现象被称为润滑剂大亨。这些局部的润滑剂堆可能超过给定数据存储水平所需的润滑剂膜厚度的标称目标。本文通过接触对超薄膜润滑剂的行为进行了深入的预测。已经考虑了流体动力学以及近表面效应和分子间的相互作用,这些相互作用负责滑块-磁盘连接处薄膜的供应,形成,空化和重整。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号