Published March 2016 | Version v1
Journal article

Free vibration analysis of magneto-electro-thermo-elastic nanobeams resting on a Pasternak foundation

  • 1. Smart Structures and New Advanced Materials Laboratory Department of Mechanical Engineering, University of Zanjan, Zanjan (Iran, Islamic Republic of)

Description

In this study, free vibration analysis of magneto-electro-thermo-elastic (METE) nanobeams resting on a Pasternak foundation is investigated based on nonlocal theory and Timoshenko beam theory. Coupling effects between electric, magnetic, mechanical and thermal loading are considered to derive the equations of motion and distribution of electrical potential and magnetic potential along the thickness direction of the METE nanobeam. The governing equations and boundary conditions are obtained using the Hamilton principle and discretized via the differential quadrature method (DQM). Numerical results reveal the effects of the nonlocal parameter, magneto-electro-thermo-mechanical loading, Winkler spring coefficients, Pasternak shear coefficients and height-to-length ratio on the vibration characteristics of METE nanobeams. It is observed that the natural frequency is dependent on the magnetic, electric, temperature, elastic medium, small-scale coefficient, and height-to-length ratio. These results are useful in the mechanical analysis and design of smart nanostructures constructed from magneto-electro-thermo-elastic materials. (paper)

Availability note (English)

Available from http://dx.doi.org/10.1088/0964-1726/25/3/035023

Additional details

Publishing Information

Journal Title
Smart Materials and Structures (Print)
Journal Volume
25
Journal Issue
3
Journal Page Range
[16 p.]
ISSN
0964-1726