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Postbuckling prediction of double-walled carbon nanotubes under axial compression

机译:碳纳米管在轴向压缩下的屈曲后预测

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摘要

An elastic double-shell model is presented for the buckling and postbuckling of a double-walled carbon nanotube subjected to axial compression. The analysis is based on a continuum mechanics model in which each tube of a double-walled carbon nanotube is described as an individual elastic shell and the interlayer friction is negligible between the inner and outer tubes. The governing equations are based on the Karman-Donnell-type nonlinear differential equations. The van der Waals interaction between the inner and outer nanotubes and the nonlinear prebuckling deformations of the shell are both taken into account. A boundary layer theory of shell buckling is extended to the case of double-walled carbon nanotubes under axial compression. A singular perturbation technique is employed to determine the buckling loads and postbuckling equilibrium paths. Numerical results reveal that the single-walled carbon nanotube and the double-walled carbon nanotube both have an unstable postbuckling behavior.
机译:提出了一种弹性双壳模型,该模型用于承受轴向压缩的双壁碳纳米管的屈曲和后屈曲。该分析基于连续力学模型,其中将双壁碳纳米管的每根管描述为一个单独的弹性壳,在内外管之间的层间摩擦可忽略不计。控制方程基于Karman-Donnell型非线性微分方程。内部和外部纳米管之间的范德华相互作用以及壳的非线性预屈曲变形都被考虑在内。壳屈曲的边界层理论扩展到轴向压缩下的双壁碳纳米管的情况。采用奇异摄动技术确定屈曲载荷和屈曲后的平衡路径。数值结果表明,单壁碳纳米管和双壁碳纳米管均具有不稳定的后屈曲行为。

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