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Effect of Thermal Bonding on Frictional Properties of Monolayer Lubricant Films Coated on Magnetic Disk Surfaces

机译:热粘合对磁盘表面单层润滑膜摩擦性能的影响

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Monolayer films of functional perfluoropolyethers (PFPEs) that are partially bonded to disk surfaces are widely used to lubricate magnetic disks. The bonding ratio (i.e., ratio of bonded thickness to total film thickness) possibly impacts the tribological behavior of the lubricant films. In this work, under lightly loaded (0–1 mN) and slowly rotated (1 or 2 r/min) conditions that prevent disturbance of the lubricant bonding state, we measured the frictional properties of 2-nm-thick PFPE Zdol2000 and Zdol4000 films as a function of bonding ratio adjusted up to 100% by anneal treatment. The friction forces of both Zdol2000 and Zdol4000 increased with increasing bonding ratio, but the increase was less noticeable for Zdol4000. Additionally, the friction of the nonannealed (5%-bonded) Zdol2000 films exhibited a linear increase with external load as described by Amontons'' law, and it increased with sliding speed. In contrast, the friction of the 100%-bonded Zdol2000 films increased nonlinearly with external load as predicted by the Johnson–Kendall–Roberts (JKR) model, and it showed no obvious speed dependency. These results suggest that mobile molecules show liquid-like frictional properties dominated by viscosity resistance, but bonded molecules exhibit elastomer-like frictional properties determined by energy dissipation during molecule deformation.
机译:部分结合到磁盘表面的功能性全氟聚醚(PFPE)单层膜被广泛用于润滑磁盘。粘合比(即粘合厚度与总膜厚度之比)可能影响润滑剂膜的摩擦学性能。在这项工作中,在轻载(0–1 mN)和缓慢旋转(1或2 r / min)的条件下(防止润滑剂粘结状态受到干扰),我们测量了2nm厚的PFPE Zdol2000和Zdol4000薄膜的摩擦性能通过退火处理将其调整为最大100%的键合率的函数。 Zdol2000和Zdol4000的摩擦力都随着粘结率的增加而增加,但是Zdol4000的增加并不明显。此外,未退火(5%粘结)的Zdol2000薄膜的摩擦力随外部载荷呈线性增加,如Amontons法则所述,并且随着滑动速度而增大。相反,按照Johnson-Kendall-Roberts(JKR)模型的预测,与100%粘合的Zdol2000薄膜的摩擦随着外部载荷而非线性增加,并且没有明显的速度依赖性。这些结果表明,可动分子表现出以粘性阻力为主的液体状摩擦特性,而键合分子表现出由分子变形过程中的能量耗散决定的类弹性体摩擦特性。

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