Postbuckling of piezoelectric FGM plates subject to thermo-electro-mechanical loading
| Data(s) |
01/07/2003
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| Resumo |
In this paper, we examine the postbuckling behavior of functionally graded material FGM rectangular plates that are integrated with surface-bonded piezoelectric actuators and are subjected to the combined action of uniform temperature change, in-plane forces, and constant applied actuator voltage. A Galerkin-differential quadrature iteration algorithm is proposed for solution of the non-linear partial differential governing equations. To account for the transverse shear strains, the Reddy higher-order shear deformation plate theory is employed. The bifurcation-type thermo-mechanical buckling of fully clamped plates, and the postbuckling behavior of plates with more general boundary conditions subject to various thermo-electro-mechanical loads, are discussed in detail. Parametric studies are also undertaken, and show the effects of applied actuator voltage, in-plane forces, volume fraction exponents, temperature change, and the character of boundary conditions on the buckling and postbuckling characteristics of the plates. (C) 2003 Elsevier Science Ltd. All rights reserved. |
| Identificador | |
| Idioma(s) |
eng |
| Publicador |
Pergamon-Elsevier Science Ltd |
| Palavras-Chave | #Mechanics #Buckling #Postbuckling #Fgms #Piezoelectric Materials #Hybrid Plates #Thermo-electro-mechanical Load #Higher-order Shear Deformation Plate Theory #Functionally Graded Plates #Differential Quadrature Method #Deformable Laminated Plates #Active Control #Vibration Characteristics #Temperature-gradient #Rectangular-plates #Mindlin Plates #Element Method #Actuators #C1 #290801 Structural Engineering #680403 Civil |
| Tipo |
Journal Article |