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Adhesion Properties of Monolayer Lubricant Films Coated on Magnetic Disk Surfaces: Contributions of Mobile and Bonded Molecules

机译:磁盘表面涂层的单层润滑膜的粘附特性:移动分子和键合分子的贡献

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摘要

Monolayer lubricant films on magnetic disk surfaces consist of bonded and mobile molecules whose different adsorption states may result in different adhesion properties, which directly impact the stability of ultra-low flying head-disk interfaces. By measuring the adhesion force and the surface coverage as a function of bonding ratio, we investigated the contributions of the bonded and mobile molecules to the adhesion of monolayer perfluoropolyether Zdol4000 and Z03 films. The experimental results, which agree with our theoretical results, indicate that bonded lubricant molecules decrease adhesion by increasing the surface coverage, whereas the ability of mobile lubricant molecules to reduce adhesion depends on their adsorption strength with the substrate. Mobile molecules with polar end groups tend to adsorb strongly on a disk, thereby increasing the surface coverage and decreasing the adhesion force.
机译:磁盘表面上的单层润滑膜由键合的和可移动的分子组成,它们的吸附状态不同可能会导致不同的粘附性能,这直接影响超低飞头磁盘界面的稳定性。通过测量粘合力和表面覆盖率随键合率的变化,我们研究了键合分子和移动分子对单层全氟聚醚Zdol4000和Z03薄膜粘合的贡献。与我们的理论结果相符的实验结果表明,键合的润滑剂分子通过增加表面覆盖率而降低了粘附力,而可移动的润滑剂分子降低粘附力的能力取决于它们在基材上的吸附强度。具有极性端基的移动分子倾向于强烈吸附在磁盘上,从而增加表面覆盖率并降低粘附力。

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