| نویسندگان | محمد عارفی-M.N.M. Allam |
| نشریه | SMART STRUCT SYST |
| تاریخ انتشار | 2015-6-01 |
| نمایه نشریه | ISI ,SCOPUS |
چکیده مقاله
This paper presents nonlinear analysis of an arbitrary functionally graded circular plate
integrated with two functionally graded piezoelectric layers resting on the Winkler-Pasternak foundation.
Geometric nonlinearity is considered in the strain-displacement relation based on the Von-Karman
assumption. All the mechanical and electrical properties except Poisson’s ratio can vary continuously along
the thickness of the plate based on a power function. Electric potential is assumed as a quadratic function
along the thickness direction. After derivation of general nonlinear equations, as an instance, numerical
results of a functionally graded material integrated with functionally graded piezoelectric material obeying
two different functionalities is investigated. The effect of different parameters such as parameters of
foundation, non homogenous index and boundary conditions can be investigated on the mechanical and
electrical results of the system. A comprehensive comparison between linear and nonlinear responses of the
system presents necessity of this study. Furthermore, the obtained results can be validated by using previous
linear and nonlinear analyses after removing the effect of foundation