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Effect of environmental hydrogen atoms on the tribological behaviors of diamond-like carbon films

机译:环境氢原子对类金刚石碳膜摩擦学行为的影响

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摘要

Influence of environmental H atoms on, the tribological behaviors of DLC films is investigated via molecular dynamics simulations. These H atoms significantly reduce the friction force, and the reduction mechanisms depend on friction temperatures. At low friction temperatures, the H atoms are concentrated near contact interfaces, and their passivations highly reduce the interfacial adhesion, resulting in the low friction force. However, high friction temperatures induce the significant diffusion of the H atoms into the DLC films and thermally expand such films and increase their graphitization, causing a wide region with easy-shear properties to reduce the friction force. It is believed that these mechanisms of friction reduction can improve the understanding of the superlow friction of DLC films in H-2 environment. (C) 2016 Elsevier Ltd. All rights reserved.
机译:通过分子动力学模拟研究了环境H原子对DLC薄膜的摩擦学行为的影响。这些H原子显着降低了摩擦力,并且还原机理取决于摩擦温度。在低摩擦温度下,H原子集中在接触界面附近,并且它们的钝化会大大降低界面粘附力,从而导致低摩擦力。但是,高摩擦温度引起H原子在DLC膜中的大量扩散,并使此类膜热膨胀并增加其石墨化作用,从而导致具有易剪切特性的宽区域,从而降低了摩擦力。相信这些减少摩擦的机制可以改善对H-2环境中DLC膜超低摩擦的理解。 (C)2016 Elsevier Ltd.保留所有权利。

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