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Curvature effects on buckling of double-walled carbon nanotubes under combined axial compression and lateral pressure

机译:轴向压缩和侧向压力作用下曲率对双壁碳纳米管屈曲的影响

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摘要

Based on a curvature model for van der Waals (vdW) pressure between the interlayer of a double-walled carbon nanotube (DWNT), explicit expressions are derived for the critical buckling load of a DWNT which is modeled as a double-elastic shell under combined axial compression and lateral pressure. The critical load is calculated for various radii, length-to-radius ratios and load combinations. New results show that the curvature effects play a significant role in buckling problems for DWNTs of small radii. Neglecting the curvature effect usually leads to an under-estimate of the critical load for DWNTs when lateral pressure dominates. In addition, unlike Wang et al (2003b Int. J. Solids Struct. 40 3893) and Qian et al (2005 Int. J. Solids Struct. 42 5426), the buckling mode corresponding to the minimum axial buckling strain is unique, even when the lateral pressure is very small. For the DWNTs under combined axial compression and lateral pressure, the critical axial strain is reduced due to the external pressure.
机译:基于双壁碳纳米管(DWNT)中间层之间的范德华(vdW)压力曲率模型,得出了DWNT的临界屈曲载荷的显式,该屈曲载荷被建模为组合下的双弹性壳轴向压缩和侧向压力。计算各种半径,长度与半径的比率以及载荷组合的临界载荷。新结果表明,曲率效应在小半径DWNT的屈曲问题中起着重要作用。当侧向压力占主导地位时,忽略曲率效应通常会导致DWNT的临界载荷被低估。此外,与Wang等人(2003b Int。J. Solids Struct。40 3893)和Qian等人(2005 Int。J. Solids Struct。42 5426)不同,对应于最小轴向屈曲应变的屈曲模式是独特的,甚至当侧向压力很小时。对于组合轴向压缩和侧向压力的DWNT,由于外部压力,临界轴向应变降低了。

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