Smart Structures and Systems

Volume 16, Number 1, 2015, pages 195-211

DOI: 10.12989/sss.2015.16.1.195

Nonlinear electromechanical analysis of a functionally graded square plate integrated with smart layers resting on Winkler-Pasternak foundation

Mohammad Arefi

Abstract

This paper presents nonlinear analysis of a functionally graded square plate integrated with two functionally graded piezoelectric layers resting on the Winkler-Pasternak foundation. Geometric nonlinearity was 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 was assumed as a quadratic function along the thickness direction and trigonometric function along the planar coordinate. The effect of non homogeneous index was investigated on the responses of the system. Furthermore, a comprehensive investigation has been performed for studying the effect of two parameters of assumed foundation on the mechanical and electrical components. A comparison between linear and nonlinear responses of the system presents necessity of this study.

Key Words

plate; Winkler-Pasternak foundation; nonlinear responses; functionally graded material; piezoelectric

Address

Mohammad Arefi: Department of Solid Mechanic, Faculty of Mechanical Engineering, University of Kashan,Kashan 87317-51167, Iran