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Bending Solutions of Cantilever Carbon Nanotubes and Molecular Dynamics Simulation

机译:悬臂碳纳米管的弯曲解决方案及分子动力学模拟

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摘要

Elastic shell model based on the semi-moment theory is applied to investigate the bending problem of the cantilever carbon nanotube (CNT) with a moment applied at its tip. Analytical expressions of the stress and displacement are derived for the elastic bending problem. Molecular dynamics (MD) simulation is taken to verify this model. Computational results reveal show that for the zigzag CNTs with length-to-diameter ratio 2.35~14.11 and armchair CNTs with length-to-diameter ratio 2.41~12.39, results obtained from the model are coincide with those obtained from MD simulation.
机译:应用基于半矩理论的弹性壳模型,研究了悬臂式碳纳米管(CNT)在尖端施加弯矩的弯曲问题。推导了弹性弯曲问题的应力和位移的解析表达式。进行分子动力学(MD)仿真以验证该模型。计算结果表明,对于长径比为2.35〜14.11的曲折状碳纳米管和长径比为2.41〜12.39的扶手椅状碳纳米管,该模型得到的结果与MD模拟得到的结果相吻合。

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