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Shear-induced lamellar ordering and interfacial sliding in amorphous carbon films: A superlow friction regime

机译:非晶碳膜中的剪切诱导层状有序和界面滑动:超低摩擦状态

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摘要

A shear-induced phase transition from disorder to lamellar ordering in amorphous carbon films are investigated by molecular dynamics simulations. Formation of well-separated graphene-like interfacial layers is observed with large interlayer distances, diminishing and ultimately vanishing interlayer bonds, which provides a near-frictionless sliding plane. The steady-state velocity accommodation mode after the running-in stage is interfacial sliding between the graphene-like layers, which explains the experimentally observed graphitization and formation of carbon-rich transfer layers. A superlow friction or superlubricity regime with friction coefficient of approximately 0.01 originates from the extremely large repulsive and low shear interactions across the sliding interface.
机译:通过分子动力学模拟研究了剪切诱导的无序碳膜中从无序到层状有序的相变。观察到分离良好的石墨烯状界面层的形成具有较大的层间距离,减小并最终消失了层间键,这提供了几乎无摩擦的滑动平面。磨合阶段之后的稳态速度调节模式是石墨烯状层之间的界面滑动,这解释了实验观察到的石墨化和富碳转移层的形成。摩擦系数约为0.01的超低摩擦或超润滑状态是由于滑动界面上的极大斥力和低剪切力相互作用引起的。

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