Li Yupeng, Kim Hyung-ick, Wei Bingqing, Kang Junmo, Choi Jae-boong, Nam Jae-Do, Suhr Jonghwan
Department of Mechanical Engineering, University of Delaware, Newark, Delaware 19716, USA.
Nanoscale. 2015 Sep 14;7(34):14299-304. doi: 10.1039/c5nr03581c.
The local buckling behavior of vertically aligned carbon nanotubes (VACNTs) has been investigated and interpreted in the view of a collective nanotube response by taking van der Waals interactions into account. To the best of our knowledge, this is the first report on the case of collective VACNT behavior regarding van der Waals force among nanotubes as a lateral support effect during the buckling process. The local buckling propagation and development of VACNTs were experimentally observed and theoretically analyzed by employing finite element modeling with lateral support from van der Waals interactions among nanotubes. Both experimental and theoretical analyses show that VACNTs buckled in the bottom region with many short waves and almost identical wavelengths, indicating a high mode buckling. Furthermore, the propagation and development mechanism of buckling waves follow the wave damping effect.
通过考虑范德华相互作用,从集体纳米管响应的角度对垂直排列的碳纳米管(VACNTs)的局部屈曲行为进行了研究和解释。据我们所知,这是关于在屈曲过程中,将纳米管之间的范德华力作为横向支撑效应的集体VACNT行为情况的首次报道。通过采用考虑纳米管之间范德华相互作用的横向支撑的有限元建模,对VACNTs的局部屈曲传播和发展进行了实验观察和理论分析。实验和理论分析均表明,VACNTs在底部区域发生屈曲,具有许多短波且波长几乎相同,这表明是一种高模态屈曲。此外,屈曲波的传播和发展机制遵循波阻尼效应。