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Decoupled formulation of piezoelectric elasticity under generalized plane deformation and its application to wedge problems

Authors :
Ching-Hwei Chue
Chung De Chen
Source :
International Journal of Solids and Structures. 39:3131-3158
Publication Year :
2002
Publisher :
Elsevier BV, 2002.

Abstract

This paper presents the formulation of piezoelectric elasticity under generalized plane deformation derived from the three-dimensional theory. There are four decoupled classes in the generalized plane deformation formulation, i.e. when l 3 ( μ )= l 2 * ( μ )=0, l 3 ( μ )= l 3 * ( μ )=0, l 3 * ( μ )= l 2 * ( μ )=0 or l 3 ( μ )= l 3 * ( μ )= l 2 * ( μ )=0. Only the inplane fields of the first class and the antiplane field of the second class include the piezoelectric effect. Several examples of wedge problem often encountered in smart structures, such as sensors or actuators are studied to examine the stress singularity near the apex of the structure. The bonded materials to the PZT-4 wedge are PZT-5, graphite/epoxy or aluminum (conductor). The influencing factors on the singular behavior of the electro-elastic fields include the wedge angle, material type, poling direction, and the boundary and interface conditions. The numerical results of the first case are compared with Xu's graphs and some comments are made in detail. In addition, some new results regarding the antiplane stress singularity of the second class are obtained via the case study. The coupled singularity solutions under generalized plane deformation are also investigated to seek the conditions of the weakest or vanishing singular stress fields.

Details

ISSN :
00207683
Volume :
39
Database :
OpenAIRE
Journal :
International Journal of Solids and Structures
Accession number :
edsair.doi...........c72e4b77783dd10e42e88dcac3ade128
Full Text :
https://doi.org/10.1016/s0020-7683(02)00247-0