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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >In situ quantitative analysis of nano-scale lubricant migration at the slider-disk interface
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In situ quantitative analysis of nano-scale lubricant migration at the slider-disk interface

机译:滑块-磁盘界面上纳米级润滑剂迁移的原位定量分析

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摘要

A thin layer of lubricant is a critical element of the head/disk interface needed to improve its tribological durability and to prevent media corrosion. Local thinning of lubricant with its subsequent breakdown often leads to the immediatefailure of the interface. This paper is devoted to the in situ quantitative analysis of nano-scale lubricant migration on the surface of a thin-film disk using the Optical Surface Analyzer (OSA). The calibration procedure, which enables quantitativemeasurements, is discussed and the technique's capabilities are demonstrated using specially prepared samples. Two cases of slider/disk interaction are analyzed: low-speed. when the slider is dragged over the disk surface, and high-speed, when the slideris flown over the same track for several days. Lubricant migration phenomena, such as depletion and pooling, are investigated quantitatively to analyze the origination of carbon wear and the mechanisms of interfacial failure. A model of high-speedslider/disk interaction involving the dynamic formation of a liquid bridge at the interface is proposed.
机译:润滑剂薄层是磁头/磁盘界面的关键元素,它需要提高其摩擦学耐久性并防止介质腐蚀。润滑剂的局部稀化及其随后的破坏通常会导致界面立即失效。本文致力于使用光学表面分析仪(OSA)对薄膜盘表面上的纳米级润滑剂迁移进行原位定量分析。讨论了可以进行定量测量的校准程序,并使用了专门准备的样品来演示该技术的功能。分析了滑块/磁盘交互的两种情况:低速。当滑块在磁盘表面上高速拖动时,如果滑块在同一轨道上飞行了几天。定量研究了润滑剂迁移现象,例如耗尽和聚集,以分析碳磨损的起源和界面破坏的机理。提出了一种在界面处动态形成液桥的高速滑块/磁盘相互作用模型。

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