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Moving trajectory analysis and simulation in atomic friction for zigzag and armchair lattice orientation of MoS2

机译:MoS2之字形和扶手椅晶格取向的原子摩擦运动轨迹分析和仿真

摘要

A friction modeling in zigzag and armchair lattice orientation of MoS2 has been demonstrated in this paper. Combing the assumption on the moving trajectories of the probe in both lattice orientations with two-dimension Tomlinson model, simulation of relationship between friction and orientation was smoothly performed with Matlab software. The lateral friction Microscopy(LFM) based experiment was conducted to verify the theoretical analysis. The consistency between simulating and realistic result reveals the validity of the entire modeling method, which is critically important for the fundamental study of the relationship between friction force and lattice orientation of MoS2 as well as its future application in real-time orientation detecting.
机译:本文证明了MoS2的锯齿形和扶手椅晶格取向的摩擦模型。结合二维Tomlinson模型对探针在两个晶格取向上的运动轨迹的假设,使用Matlab软件顺利地进行了摩擦与取向之间关系的模拟。进行了基于横向摩擦显微镜(LFM)的实验,以验证理论分析。仿真结果与实际结果之间的一致性揭示了整个建模方法的有效性,这对于基础研究MoS2的摩擦力与晶格取向之间的关系以及其在实时取向检测中的应用至关重要。

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