Large Amplitude Free Vibration of Nanobeams Subjected to Magnetic Field Based on Nonlocal Elasticity Theory

Article Preview

Abstract:

In the present study, nonlinear free vibration behavior of nanobeam subjected to magnetic field is investigated based on Eringen's nonlocal elasticity and Euler–Bernoulli beam theory. The Hamilton's principle is adopted to derive the governing equations together with Euler–Bernoulli beam theory and the von-Kármán's nonlinear strain–displacement relationships. An approximate analytical solution is obtained for the nonlinear frequency of the nanobeam under magnetic field by using the Galerkin method and He's variational method. In the numerical results, the ratio of nonlinear frequency to linear frequency is presented. The effect of nonlocal parameter on the nonlinear frequency ratio is studied; furthermore, the effect of magnetic field on the nonlinear free vibration behavior of nanobeam is investigated.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

1199-1203

Citation:

Online since:

May 2015

Authors:

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2015 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

* - Corresponding Author

[1] A.C. Eringen: J Appl Phys 54 (1983), p.4703.

Google Scholar

[2] M. Aydogdu: Physica E 41 (2009), p.1651.

Google Scholar

[3] J. Peddieson, G.R. Buchanan and R.P. McNitt: Int J Eng Sci 41 (2003), p.305.

Google Scholar

[4] J. Yang, L.L. Ke and S. Kitipornchai: Physica E 42 (2010), p.1727.

Google Scholar

[5] L.L. Ke, Y. J. Yang and S. Kitipornchai: Comput Mater Sci 47 (2009), p.409.

Google Scholar

[6] J.H. He: Chaos, Solitons and Fractals 34 (2007), p.1430.

Google Scholar

[7] A. Fallah and M.M. Aghdam: Eur J Mech/A Solid 30 (2011), p.571.

Google Scholar

[8] A. Fallah and M.M. Aghdam: Composites: Part B 43 (2012), p.1523.

Google Scholar

[9] T. Pirbodaghi, M.T. Ahmadian and M. Fesanghary: Mech Res Commun 36 (2009), p.143.

Google Scholar