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Peeling off Carbon Nanotubes from Rigid Substrates: An Exact Model

机译:从刚性基板上剥离碳纳米管的精确模型

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摘要

Recent biomimetic design, using multi-walled carbon nanotubes, showed that the synthetic gecko foot hairs have much stronger adhesive strength than natural ones. In this work, an exact continuum elastica model is proposed to study the peeling process of carbon nanotubes from rigid smooth substrates. It has been found that the van der Waals interaction between the tube and the substrate is related to the tube's vertical displacement as well as the bending angle. Numerical simulations reveal that the peeling process is complex, and sometimes includes sudden transitions between different geometric configurations of the nanotube and equilibrium path branch-switching phenomena. The bending angle plays an important part on the peeling force when the tube's radius and the rotation angle in the adhesion region are both large.
机译:最近使用仿生壁碳纳米管进行的仿生设计表明,合成壁虎脚毛比天然壁虎毛具有更强的粘合强度。在这项工作中,提出了一个精确的连续弹性模型来研究碳纳米管从刚性光滑基底上的剥离过程。已经发现,管和基板之间的范德华相互作用与管的垂直位移以及弯曲角度有关。数值模拟表明,剥离过程很复杂,有时还包括纳米管不同几何构型与平衡路径分支转换现象之间的突然过渡。当管的半径和粘附区域中的旋转角都较大时,弯曲角对剥离力起重要作用。

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