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A nonlocal continuum mechanics-based asymptotic theory for the buckling analysis of SWCNTs embedded in an elastic medium subjected to combined hydrostatic pressure and axial compression

机译:基于非局部连续体制力学的渐近理论,用于嵌入静压介质中的SWCNTS的屈曲分析,经受组合静压压力和轴向压缩的弹性介质

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摘要

Based on nonlocal continuum mechanics, the authors develop an asymptotic theory by which to examine the buckling behavior of simply supported, single-walled carbon nanotubes (SWCNTs) embedded in an elastic medium under combined hydrostatic pressure and axial compression using the perturbation method. In the formulation, the Eringen nonlocal constitutive relations are used to account for the small length scale effect; the interactions between the SWCNT and its surrounding medium are modelled as a Winkler foundation model, and the half-thickness- to- the mid-surface radius ratio is selected as the perturbation parameter. After performing some mathematical processes, including non-dimensionalization, asymptotic expansion, and successive integration, among others, the authors separate the three-dimensional (3D) nonlocal elasticity equations into recursive sets of governing equations (GEs) based on the Donnell-type nonlocal classical shell theory (CST) for various order problems. The Donnell-type nonlocal CST is derived as a first-order approximation of the 3D nonlocal elasticity problem, where the GEs for higher-order problems retain the same differential operators as those of the Donnell-type nonlocal CST although with different nonhomogeneous terms. The current asymptotic solutions for the critical load parameters of the embedded SWCNT are obtained in order to assess the accuracy of various nonlocal CSTs and nonlocal beam theories available in the literature.
机译:基于非本体连续体力学,作者开发了一种渐近理论,通过使用扰动方法检查嵌入在弹性介质的弹性介质中的简单支撑,单壁碳纳米管(SWCNTs)的屈曲行为。在制剂中,eringen非局部构成关系用于考虑小的长度效果; SWCNT及其周围介质之间的相互作用被建模为Winkler基础模型,并选择半厚度至中表面半径比作为扰动参数。在执行一些数学过程之后,包括非维度,渐近扩展和连续集成等,作者将三维(3D)非局部弹性方程基于Donnell型非函数将三维(3D)非局部弹性方程分离为递归组的控制方程(GES)古典壳理论(CST)各种秩序问题。 Donnell型非局部CST作为3D非识别弹性问题的一阶近似,其中GES用于更高阶问题的GES将相同的差分运营商保留为Donnell型非本地CST的相同的差分运营商,尽管具有不同的非均匀术语。获得了嵌入式SWCNT的临界负载参数的当前渐近解,以评估文献中可用的各种非识别CST和非识别光束理论的准确性。

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