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Non-Linear dynamic response of a single wall carbon nanotube subjected to radial impulse

机译:径向脉冲作用下单壁碳纳米管的非线性动力响应

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This paper investigates non-linear dynamic response of a single wall carbon nanotube (CNT) based on a thin-walled shell mode. Following the subsequent motion of a single wall (CNT) under radial impulsive pressure, a nonlinear dynamic response may occur through interaction of circumferential membrane force with flexural curvature. The results carried out show that the initial deformation energy in the single wall CNT will be transferred, over a number of cycles, from the breathing mode to one or two high flexural modes, so that the nonlinear flexural stress of the single wall CNT is significantly higher than that given by linear theory. The principal point of interest are the conditions for significant interaction to occur and the increased flexural stress associated with the altered radial motion of a single wall CNT.
机译:本文研究了基于薄壁壳模式的单壁碳纳米管(CNT)的非线性动态响应。随着单壁(CNT)在径向脉冲压力下的后续运动,非线性动力学响应可能会通过周向膜力与弯曲曲率的相互作用而发生。进行的结果表明,单壁碳纳米管的初始变形能将在多个循环中从呼吸模式转移到一种或两种高挠曲模式,因此单壁碳纳米管的非线性挠曲应力明显高于线性理论给出的值。感兴趣的主要点是发生重大相互作用的条件以及与单壁CNT径向运动改变相关的增加的弯曲应力。

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