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Nonlinear Vibrations of Multiwalled Carbon Nanotubes under Various Boundary Conditions
Author(s) -
Hossein Aminikhah,
M. Hemmatnezhad
Publication year - 2011
Publication title -
international journal of differential equations
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.324
H-Index - 20
eISSN - 1687-9651
pISSN - 1687-9643
DOI - 10.1155/2011/343576
Subject(s) - carbon nanotube , van der waals force , vibration , materials science , nonlinear system , amplitude , boundary value problem , perturbation (astronomy) , nanotube , work (physics) , boundary (topology) , mechanics , classical mechanics , nanotechnology , composite material , mathematical analysis , physics , mathematics , thermodynamics , acoustics , quantum mechanics , molecule
The present work deals with applying the homotopy perturbation method to the problem of the nonlinear oscillations of multiwalled carbon nanotubes embedded in an elastic medium under various boundary conditions. A multiple-beam model is utilized in which the governing equations of each layer are coupled with those of its adjacent ones via the van der Waals interlayer forces. The amplitude-frequency curves for large-amplitude vibrations of single-walled, double-walled, and triple-walled carbon nanotubes are obtained. The influences of some commonly used boundary conditions, changes in material constant of the surrounding elastic medium, and variations of the nanotubes geometrical parameters on the vibration characteristics of multiwalled carbon nanotubes are discussed. The comparison of the generated results with those from the open literature illustrates that the solutions obtained are of very high accuracy and clarifies the capability and the simplicity of the present method. It is worthwhile to say that the results generated are new and can be served as a benchmark for future works

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