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Prediction of the critical buckling load of multi-walled carbon nanotubes under axial compression
Affiliation:1. Département de génie civil et environnement, École nationale des sciences appliquées (ENSA), Université Mohammed-Premier, BP 03, Ajdir Al Hoceima, Morocco;2. Laboratoire d''Ingénierie et Matériaux LIMAT, Faculté des Sciences Ben M''Sik, Université Hassan-II de Casablanca, Sidi Othman, Casablanca, Morocco
Abstract:In this paper, we propose a new explicit analytical formula of the critical buckling load of double-walled carbon nanotubes (DWCNT) under axial compression. This formula takes into account van der Waals interactions between adjacent tubes and the effect of terms involving tube radii differences generally neglected in the derived expressions of the critical buckling load published in the literature. The elastic multiple Donnell shells continuum approach is employed for modelling the multi-walled carbon nanotubes. The validation of the proposed formula is made by comparison with a numerical solution. The influence of the neglected terms is also studied.
Keywords:Buckling  Multi-walled carbon nanotubes  Van der Waals interaction  Axial compression  Elastic multiple Donnell shell  Flambage  Nanotubes de carbone multi-parois  Interaction de van der Waals  Compression axiale  Coque élastique multiple de Donnell
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