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Friction measurements of nanometer-thick lubricant films using ultra-smooth sliding pins treated with gas cluster ion beam

机译:使用气体团簇离子束处理的超光滑滑动销测量纳米厚的润滑膜的摩擦

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摘要

Friction properties of nanometer-thick lubricant films confined between two ultra-smooth solid surfaces are crucial to the practical performance of technologically advanced mechanical devices such as micro-electro-mechanical systems and hard disk drives. In this work, we applied argon gas cluster ion beam (Ar-GCIB) treatments to obtain ultra-smooth sliding pins for pin-on-disk tests of nanometer-thick per-fluoropolyether (PFPE) lubricant films coated on magnetic disk surfaces. The GCIB treatments effectively smoothed the pin surfaces, and increases in the Ar dose decreased surface roughness. An ultra-smooth surface with a maximum peak height (R_p) less the monolayer lubricant film thickness was achieved when the Ar dose was increased to 8 × 10~(16) ions/cm~2. We observed that both surface roughness and film thickness affected the friction coefficients of the PFPE films. To quantitatively describe the interplay of surface roughness and film thickness, we introduced two roughness characteristics: the ratio of film thickness to the surface's root-mean-square roughness (h/σ), and a surface-pattern parameter (γ), defined as the ratio of correlation lengths in two orthogonal directions. We infer that a fixed γ and higher h/σ lead to lower friction coefficients, while a fixed h/σ and higher γ induce higher friction coefficients.
机译:限制在两个超光滑固体表面之间的纳米级润滑膜的摩擦性能对于诸如微机电系统和硬盘驱动器之类的技术先进的机械设备的实用性能至关重要。在这项工作中,我们应用了氩气团簇离子束(Ar-GCIB)处理来获得超光滑的滑动销,用于针对磁盘表面上涂覆的纳米级全氟聚醚(PFPE)润滑膜的销钉测试。 GCIB处理有效地使销钉表面光滑,并且Ar剂量的增加降低了表面粗糙度。当Ar剂量增加到8×10〜(16)离子/ cm〜2时,可获得最大峰高(R_p)小于单层润滑剂膜厚度的超光滑表面。我们观察到表面粗糙度和膜厚都会影响PFPE膜的摩擦系数。为了定量描述表面粗糙度和薄膜厚度之间的相互作用,我们引入了两个粗糙度特征:薄膜厚度与表面的均方根粗糙度之比(h /σ)和表面图案参数(γ),定义为两个正交方向上相关长度的比率。我们推断,固定的γ和较高的h /σ会导致较低的摩擦系数,而固定的h /σ和较高的γ会导致较高的摩擦系数。

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