首页> 外文期刊>International Journal of Mechanical Sciences >Vibration analysis of elastically restrained double-walled carbon nanotubes on elastic foundation subjected to axial load using nonlocal shear deformable beam theories
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Vibration analysis of elastically restrained double-walled carbon nanotubes on elastic foundation subjected to axial load using nonlocal shear deformable beam theories

机译:弹性地基上受约束的双壁碳纳米管在轴向载荷作用下的非局部剪切变形梁理论振动分析

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摘要

In the context of nonlocal continuum theory, seeking an analytical solution to the equations of motion of stocky double-walled carbon nanotubes (DWCNTs) with arbitrary boundary conditions is a very problematic task. Thereby, proposing efficient numerical techniques for frequency analysis and optimal design of such nanostructures is of great advantageous. Herein, free transverse vibration of an elastically supported stocky DWCNT embedded in an elastic matrix under initial axial force is of interest. To this end, the equivalent continuum structures (ECSs) associated with the innermost and outermost tubes are taken into account. The interaction of the DWCNT with its surrounding matrix is modeled using lateral and rotary continuous springs. Through consideration of interlayer van der Waals forces via an equivalent spring system, the two tubes are appropriately interacted. Using Hamilton's principle, the dimensionless equations of motion of elastically supported DWCNTs are established using nonlocal Rayleigh, Timoshenko, and higher-order beam theories. The unknown fields of the equations of motion for each model are discretized in the spatial domain using reproducing kernel particle method. After tedious calculations, the set of eigenvalue equations pertinent to each model is extracted and numerically solved. The convergence checks of the proposed numerical models in predicting flexural frequencies of DWCNTs are carried out. The obtained results are also compared with those of other works and a reasonably good agreement is achieved. Through various numerical studies, the influences of slenderness ratio, ratio of the mean radius to the thickness of the ECSs, small-scale parameter, initial axial force, lateral and rotational stiffness of the surrounding matrix on the flexural frequencies of stocky DWCNTs are carefully examined for different boundary conditions. The capabilities of the proposed nonlocal models in capturing the flexural frequencies of stocky DWCNTs are discussed as well.
机译:在非局部连续性理论的背景下,寻找具有任意边界条件的矮小的双壁碳纳米管(DWCNT)的运动方程的解析解是一个非常有问题的任务。因此,提出用于频率分析和这种纳米结构的最佳设计的有效数值技术是非常有利的。在此,关注在初始轴向力下嵌入弹性基质中的弹性支撑的库存DWCNT的自由横向振动。为此,考虑了与最里面和最外面的管子相关的等效连续体结构(ECS)。使用横向和旋转连续弹簧对DWCNT与周围矩阵的相互作用进行建模。通过考虑通过等效弹簧系统的层间范德华力,两根管子适当地相互作用。使用汉密尔顿原理,利用非局部瑞利,蒂莫申科和高阶束理论建立了弹性支撑DWCNT的无量纲运动方程。使用再现核粒子方法在空间域中将每个模型的运动方程的未知字段离散化。经过繁琐的计算后,与每个模型相关的特征值方程组将被提取并进行数值求解。在预测DWCNT的弯曲频率时,对提出的数值模型进行了收敛性检查。还将获得的结果与其他工作的结果进行比较,并取得了相当好的协议。通过各种数值研究,仔细研究了细长比,ECS的平均半径与厚度之比,小尺度参数,初始轴向力,周围基质的横向刚度和旋转刚度对矮小的DWCNT弯曲频率的影响。对于不同的边界条件。还讨论了所提出的非局部模型在捕获粗大DWCNT的挠曲频率方面的能力。

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