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Nonlocal shear deformable shell model for thermal postbuckling of axially compressed double-walled carbon nanotubes

机译:轴向压缩双壁碳纳米管热后屈曲的非局部剪切可变形壳模型

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摘要

An investigation is reported of the thermal buckling and postbuckling of axially compressed double-walled carbon nanotubes (CNTs) subjected to a uniform temperature rise. The double-walled carbon nanotube is modeled as a nonlocal shear deformable cylindrical shell, which contains small-scale effects and van der Waals interaction forces. The governing equations are based on higher order shear deformation shell theory with a von Kármán-Donnell-type of kinematic nonlinearity and include thermal effects. Temperature-dependent material properties, which come from molecular dynamics (MD) simulations, and an initial point defect, which is simulated as a dimple on the tube wall, are both taken into account. The small-scale parameter, e 0 a, is estimated by matching the buckling temperature of CNTs observed from the MD simulation results with the numerical results obtained from the nonlocal shear deformable shell model. The numerical illustrations concern the thermal postbuckling response of perfect and imperfect, single- and double-walled CNTs with different values of compressive load ratio. The results show that buckling temperature and postbuckling behavior of nanotubes are very sensitive to the small-scale parameter. The results reveal that temperature-dependent material properties have a significant effect on the thermal postbuckling behavior of both single- and double-walled CNTs.
机译:据报道,轴向压缩的双壁碳纳米管(CNT)受到均匀的温度升高后会发生热屈曲和后屈曲。将双壁碳纳米管建模为非局部剪切可变形圆柱壳,其中包含小规模效应和范德华相互作用力。控制方程基于具有高阶运动非线性的vonKÃrmn-Donnell型高阶剪切变形壳理论,并包括热效应。都考虑到了与温度相关的材料特性,这些特性来自于分子动力学(MD)模拟,以及一个初始点缺陷,该缺陷被模拟为管壁上的凹痕。通过将MD模拟结果中观察到的CNT的屈曲温度与从非局部剪切变形壳模型获得的数值结果进行匹配,可以估算出小尺度参数e 0 a。数值说明涉及具有不同压缩负载比值的完美和不完美的单壁和双壁CNT的热后屈曲响应。结果表明,纳米管的屈曲温度和后屈曲行为对小尺度参数非常敏感。结果表明,取决于温度的材料特性对单壁和双壁CNT的热后屈曲行为都有重大影响。

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    《Philosophical Magazine》 |2010年第23期|p.3189-3214|共26页
  • 作者单位

    a School of Ocean and Civil Engineering b State Key Laboratory of Ocean Engineering, Shanghai Jiao Tong University, Shanghai 200030, People's Republic of China c School of Engineering, University of Western Sydney, Locked Bag 1797, Penrith South DC, NSW 1797, Australia;

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