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首页> 外文期刊>Acta Mechanica Solida Sinica >POSTBUCKLING OF CARBON NANOTUBES SUBJECTED TO CYCLIC LOAD
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POSTBUCKLING OF CARBON NANOTUBES SUBJECTED TO CYCLIC LOAD

机译:循环载荷下碳纳米管的后屈曲

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摘要

This study focuses on the postbuckling and the nonlinear behavior of single-walled carbon nanotubes subject to a cyclic axial compressive load through the use of molecular dynamic simulation based on the Tersoff-Brenner potential. It reveals the bifurcation behavior in the buckling process simulated with very fine time steps. In the whole cycle of nonlinear deformation, the carbon nanotubes exhibit the profound hysteretic behavior and the energy absorption ability. The molecular dynamics simulation indicates that the carbon nanotube behaves approximately as an ideal plastic spring when the cyclic strain is applied within the same postbuckling mode. In comparison, the theory of continuum mechanics gives a good prediction about the critical buckling strength, but only provides a rough estimation for the post-buckling behaviors.
机译:本研究通过使用基于Tersoff-Brenner势的分子动力学模拟,研究了单壁碳纳米管在循环轴向压缩载荷下的后屈曲和非线性行为。它揭示了在非常精细的时间步长模拟的屈曲过程中的分叉行为。在整个非线性变形周期中,碳纳米管表现出深远的滞后行为和能量吸收能力。分子动力学模拟表明,当在相同的后屈曲模式下施加循环应变时,碳纳米管的行为近似于理想的塑料弹簧。相比之下,连续力学理论对临界屈曲强度给出了很好的预测,但仅提供了对屈曲后行为的粗略估计。

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