Closed-form Solutions to Model the Buckling and Stable Length of Multi Walled Carbon Nanotube Probes Near Graphite Sheets
Publish place: 10th Conference of Iranian Aerospace Society
Publish Year: 1389
نوع سند: مقاله کنفرانسی
زبان: English
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شناسه ملی سند علمی:
AEROSPACE10_292
تاریخ نمایه سازی: 2 اسفند 1390
Abstract:
In this paper, homotopy perturbation method (HPM) is introduced to investigate buckling of freestanding carbon nanotubes in the vicinity of the graphene layers. A continuum nano-scaled model is employed to obtain nonlinear constitutive equation of freestanding nanotubes. The van der Waals attraction is computed from the simplified Lennard-Jones potential for two common engineering cases including large and small number of graphene layers. An analytical closed-form solution is obtained in terms of convergent series with easily computable components. The intermolecular force-induced deflection, minimum initial gap and stable length of freestanding nanotubes are determined. The analytical results agree well with numerical solutions. The results of the HPM are also compared with lumped parameter model and approximated solution
Keywords:
Nanomaterials- Buckling- Selection of components
Authors
F. Alimoradi
Civil Engineering Group, Islamic Azad University, Chaloos branch, Chaloos, Iran
M. Farsadi
Faculty of Mechanical Engineering, UNIVERSITI TEKNOLOGI MALAYSIA, UTM ۸۱۳۱۰ Johor bahru, Malaysia
A Koochi
Department of Aerospace Engineering, and Center of Excellence in Aerospace Systems, Azadi Avenue, Tehran, Iran
H Mansoori۳
Department of Aerospace Engineering, and Center of Excellence in Aerospace Systems, Azadi Avenue, Tehran, Iran
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