Title of article
A meshless approach for free transverse vibration of embedded single-walled nanotubes with arbitrary boundary conditions accounting for nonlocal effect
Author/Authors
Kiani، نويسنده , , Keivan، نويسنده ,
Issue Information
ماهنامه با شماره پیاپی سال 2010
Pages
14
From page
1343
To page
1356
Abstract
A single-walled nanotube structure embedded in an elastic matrix is simulated by the nonlocal Euler–Bernoulli, Timoshenko, and higher order beams. The beams are assumed to be elastically supported and attached to continuous lateral and rotational springs to take into account the effects of the surrounding matrix. The discrete equations of motion associated with free transverse vibration of each model are established in the context of the nonlocal continuum mechanics of Eringen using Hamiltonʹs principle and an efficient meshless method. The effects of slenderness ratio of the nanotube, small scale effect parameter, initial axial force and the stiffness of the surrounding matrix on the natural frequencies of various beam models are investigated for different boundary conditions. The capabilities of the proposed nonlocal beam models in capturing the natural frequencies of the nanotube are also addressed.
Keywords
Natural frequencies , Nonlocal Euler–Bernoulli beam , Nonlocal Timoshenko beam , Single walled nanotubes , Nonlocal higher order beam , reproducing kernel particle method (RKPM)
Journal title
International Journal of Mechanical Sciences
Serial Year
2010
Journal title
International Journal of Mechanical Sciences
Record number
1422994
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