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Thin lubricant films confined between crystalline surfaces: Gold versus mica

机译:限制在晶体表面之间的薄润滑膜:金与云母

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摘要

In this paper we report molecular dynamics simulation results of lubricant films only a few nanometres thick confined between atomically smooth gold or model mica surfaces. We have studied dodecane (C_(12)H_(26)) of various film thicknesses. We show below a critical film thickness structural transitions take place with the formation of crystal bridges. We demonstrate this critical film thickness is larger with Au(100) surface. Below this critical film thickness we observe a large enhancement of apparent shear viscosity. This enhancement, however, is much lower for films confined by gold. We find the extrapolated zero shear viscosity of a ~2.4-nm-thick film confined by gold is almost two orders of magnitude lower than that of a film, of the same thickness, confined by model mica. We find the source of this difference is the weaker pinning of the layers next to the surface of the gold. This leads to stronger slip, at the lubricant-gold interface, which persists at solid-like and liquid-like states. For mica a larger part of shearing takes place inside the film. The solid-like structure of the films confined by gold shows stronger resilience to shear and melt at considerably larger shear rates than those confined by model mica surfaces. These differences could be important in developing low friction devices at microscale.
机译:在本文中,我们报告了在原子光滑的金或模型云母表面之间仅几纳米厚的润滑膜的分子动力学模拟结果。我们研究了各种膜厚度的十二烷(C_(12)H_(26))。我们显示出低于临界膜厚度的结构转变随晶体桥的形成而发生。我们证明该临界膜厚度在Au(100)表面较大。低于该临界膜厚度,我们观察到表观剪切粘度大大提高。但是,对于金限制的薄膜,这种增强作用要低得多。我们发现,由金限制的〜2.4 nm厚薄膜的外推零剪切粘度比由模型云母限制的相同厚度的薄膜的外推零剪切粘度低两个数量级。我们发现这种差异的根源是靠近金表面的层的固定作用较弱。这导致在润滑剂-金界面处的滑动更强,并在固态和液态状态下持续存在。对于云母,大部分剪切发生在薄膜内部。与模型云母表面所限定的相比,金所限定的薄膜的固体结构在更大的剪切速率下显示出更强的剪切和熔融弹性。这些差异对于开发微型的低摩擦装置可能很重要。

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