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首页> 外文期刊>Tribology letters >Contributions of Mobile and Bonded Molecules to Dynamic Friction of Nanometer-Thick Perfluoropolyether Films Coated on Magnetic Disk Surfaces
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Contributions of Mobile and Bonded Molecules to Dynamic Friction of Nanometer-Thick Perfluoropolyether Films Coated on Magnetic Disk Surfaces

机译:流动和键合分子对磁盘表面纳米厚全氟聚醚薄膜动态摩擦的贡献

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摘要

To protect the interface against intermittent head-disk contact in hard disk drives, nanometer-thick perfluoropolyether (PFPE) films consisting of both "bonded" and "mobile" molecules are applied on the disk surfaces. Because of their different adsorption states and mobility, the bonded and mobile molecules are supposed to contribute differently to friction properties, which directly impact the stability of ultra-low flying head-disk interfaces. By measuring the friction force at light loads and low to high speeds as a function of bonded and mobile film thicknesses, we studied the contributions of bonded and mobile molecules to the dynamic friction of nanometer-thick PFPE films. We found that the friction coefficient of lubricant films without or with less bonded molecules increased as a power function of sliding speed, whereas that of lubricant films with more bonded molecules increased logarithmically with sliding speed. We suggest that these results can be explained by the following mechanisms: the dynamic friction of lubricant films with-out and with less bonded molecules is dominated by shear thinning behavior of mobile molecules, while that of lubricant films with more bonded molecules is governed by bonded molecules which lead to boundary lubrication.
机译:为了保护接口免于硬盘驱动器中的磁盘头间歇性接触,将由“键合”和“移动”分子组成的纳米级全氟聚醚(PFPE)薄膜应用于磁盘表面。由于它们的吸附状态和迁移率不同,因此认为键合分子和移动分子对摩擦性能的贡献不同,这直接影响了超低飞头磁盘界面的稳定性。通过测量轻载和低速至高速下的摩擦力与粘结和移动膜厚度的关系,我们研究了粘结和移动分子对纳米厚PFPE膜动态摩擦的贡献。我们发现,不带或带有较少键合分子的润滑膜的摩擦系数随滑动速度的幂函数而增加,而带或带有更多键合分子的润滑膜的摩擦系数随滑动速度对数增加。我们认为,这些结果可以通过以下机理来解释:没有和键合较少的分子的润滑膜的动摩擦主要由移动分子的剪切稀化行为决定,而具有更多键合分子的润滑膜的动摩擦则由键合决定。导致边界润滑的分子。

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