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In- and out-of-plane dynamic flexural behaviors of two-dimensional ensembles of vertically aligned single-walled carbon nanotubes

机译:垂直排列的单壁碳纳米管的二维集合的面内和面外动态弯曲行为

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摘要

Useful nonlocal discrete and continuous models are developed to explain free vibration of two-dimensional (2D) ensembles of single-walled carbon nanotubes (SWCNTs) in bending. For this purpose, the models are constructed based on the nonlocal Rayleigh, Timos henko, and higher-order beam theories. In contrast to an individual SWCNT exhibits identical bending behavior in different directions, for 2D ensemble networks of SWCNTs, it is shown that such a fact is completely dissimilar. Such an important issue leads to the definition of in-plane and out-of-plane flexural behaviors for such nanostructures. Subsequently, their corresponding fundamental frequencies are evaluated based on the proposed nonlocal models. The capabilities of the proposed nonlocal continuous models in predicting flexural frequencies of SWCNTs' ensembles with different numbers of SWCNTs as well as various levels of slenderness ratios are then explained. Such investigations confirm the high efficiency of the proposed continuous models. This matter would be of great importance in vibration analysis of highly populated ensembles of SWCNTs in which the discrete models may suffer from the size of the governing equations. The roles of the number of SWCNTs, slenderness ratio, intertube distance, small-scale parameter, and radius of the SWCNT on both in-plane and out-of-plane fundamental frequencies are addressed.
机译:开发了有用的非局部离散和连续模型来解释弯曲时单壁碳纳米管(SWCNT)的二维(2D)集成体的自由振动。为此,模型是基于非局部瑞利,蒂莫斯·亨科和高阶光束理论构建的。与单个SWCNT在不同方向上表现出相同的弯曲行为相反,对于SWCNT的2D集成网络,这表明事实完全不同。如此重要的问题导致了此类纳米结构的面内和面外弯曲行为的定义。随后,基于建议的非本地模型评估其相应的基频。然后解释了所提出的非局部连续模型在预测具有不同数量的SWCNT的SWCNT集合的弯曲频率以及各种细长比的能力。这样的研究证实了所提出的连续模型的高效率。这个问题在SWCNTs人口众多的集合的振动分析中具有重要意义,其中离散模型可能会受到控制方程式的影响。在平面内和平面外基频上,讨论了SWCNT的数量,细长比,管间距离,小尺度参数和SWCNT半径的作用。

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