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RMVT-Based Nonlocal Timoshenko Beam Theory for Stability Analysis of Embedded Single-Walled Carbon Nanotube with Various Boundary Conditions

机译:基于RMVT的非局域Timoshenko束理论用于各种边界条件的嵌入式单壁碳纳米管的稳定性分析

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摘要

On the basis of Reissner's mixed variational theorem (RMVT), a nonlocal Timoshenko beam theory (TBT) is developed for the stability analysis of a single-walled carbon nanotube (SWCNT) embedded in an elastic medium, with various boundary conditions and under axial loads. Eringen's nonlocal elasticity theory is used to account for the small length scale effect. The strong formulations of the RMVT-based nonlocal TBT and its associated possible boundary conditions are presented. The interaction between the SWCNT and its surrounding elastic medium is simulated using the Pasternak foundation models. The critical load parameters of the embedded SWCNT with different boundary conditions are obtained by using the differential quadrature (DQ) method, in which the locations of np sampling nodes are selected as the roots of np-order Chebyshev polynomials. The results of the RMVT-based nonlocal TBT are compared with those obtained using the principle of virtual displacement (PVD)-based nonlocal TBT available in the literature. The influences of some crucial effects on the critical load parameters of the embedded SWCNT are examined, such as different boundary conditions, Winkler stiffness and shear modulus of the foundation, aspect ratios, and the nonlocal parameter.
机译:基于Reissner的混合变分定理(RMVT),开发了一种非局部Timoshenko束理论(TBT),用于分析弹性体中嵌入的单壁碳纳米管(SWCNT)在各种边界条件和轴向载荷下的稳定性。 。 Eringen的非局部弹性理论用于解释小长度尺度效应。介绍了基于RMVT的非本地TBT的强大公式及其相关的可能边界条件。使用Pasternak基础模型模拟SWCNT及其周围弹性介质之间的相互作用。通过使用差分正交(DQ)方法获得具有不同边界条件的嵌入式SWCNT的临界载荷参数,其中选择np个采样节点的位置作为np阶Chebyshev多项式的根。将基于RMVT的非本地TBT的结果与使用文献中基于虚拟位移(PVD)的非本地TBT原理获得的结果进行比较。研究了一些关键效应对嵌入式SWCNT的关键载荷参数的影响,例如不同的边界条件,基础的Winkler刚度和剪切模量,长宽比和非局部参数。

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