首页> 外文期刊>International journal of structural stability and dynamics >CURVATURE EFFECT OF INTERLAYER VAN DER WAALS FORCES ON AXIAL BUCKLING OF A DOUBLE-WALLED CARBON NANOTUBE
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CURVATURE EFFECT OF INTERLAYER VAN DER WAALS FORCES ON AXIAL BUCKLING OF A DOUBLE-WALLED CARBON NANOTUBE

机译:范式范德华力对双壁碳纳米管轴向屈曲的曲率影响

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摘要

The curvature effect of interlayer van der Waals (vdW) forces on an axially compressed double-walled carbon nanotube is studied. Unlike existing models which assume that the interlayer vdW pressure at any point between the inner and outer tubes depends merely on the difference of their deflections at that point, the present model considers the dependence of the interlayer vdW pressure on the curvature of the difference of deflections at that point. A simple formula is derived for the critical axial strain, which clearly indicates the role of the interlayer vdW forces affected by the curvature of deflection. In particular, the critical axial strain predicted by the present model is higher than or equal to that given by the existing models without the curvature effect provided that the coefficient for the curvature dependence of the interlayer vdW pressure is negative. Furthermore, the curvature effect on the critical axial strain is more significant for buckling modes of smaller wavelengths. These results indicate that the curvature effect, which has been neglected in all existing models, could play a significant role in various buckling problems especially for multi-walled carbon nanotubes of smaller radii.
机译:研究了层间范德华力(vdW)对轴向压缩的双壁碳纳米管的曲率影响。与现有模型假定内管和外管之间任何点的层间vdW压力仅取决于它们在该点处的挠度差不同,本模型考虑了层间vdW压力对挠度差曲率的依赖性。在那时候。为临界轴向应变导出了一个简单的公式,该公式清楚地表明了受挠曲率影响的层间vdW力的作用。特别地,如果层间vdW压力的曲率依赖性系数为负,则本模型预测的临界轴向应变高于或等于不具有曲率效应的现有模型给出的临界轴向应变。此外,对于较小波长的屈曲模式,曲率对临界轴向应变的影响更为显着。这些结果表明,在所有现有模型中都已忽略的曲率效应可能在各种屈曲问题中发挥重要作用,尤其是对于半径较小的多壁碳纳米管而言。

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