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Lubricant replenishment on carbon coated discs

机译:涂碳光盘上的润滑剂补给

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摘要

The replenishment of a lubricant on a carbon coated disc was characterized through theoretical modeling employing experimentally acquired diffusion coefficient data. To quantify the reflow behaviour of a lubricant film, a parameter, the critical reflow time, was defined as the time to replenish a depleted hole of 1 /spl mu/m diameter in a 2 nm thick lubricant film. The results based on solving 2D diffusion equations showed that the critical reflow time is a strong function of the endgroup polarity and molecular weight of a lubricant, as well as the H and N content in the carbon film. Based on these results, design criteria have been provided for enhanced wear durability of magnetic media.
机译:通过使用实验获得的扩散系数数据的理论模型来表征在碳涂层圆盘上的润滑剂补给。为了量化润滑膜的回流行为,将临界回流时间参数定义为在2 nm厚的润滑膜中补充直径为1 / splμm/ m的耗尽孔的时间。基于求解2D扩散方程的结果表明,临界回流时间是润滑剂的端基极性和分子量以及碳膜中H和N含量的强函数。基于这些结果,已经提供了用于提高磁性介质的耐磨性的设计标准。

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