Quasistatic Adhesive Contact of Piezoelectric Cylinders
Articles
M. Sofonea
Universit´e de Perpignan, France
L. Chouchane
Universit´e Ferhat Abbas-S´etif, Alg´erie
Published 2009-01-20
https://doi.org/10.15388/NA.2009.14.1.14536
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Keywords

antiplane shear
quasistatic process
electro-elastic material
electro-viscoelastic material
contact process
adhesion
fixed point
weak solution

How to Cite

Sofonea, M. and Chouchane, L. (2009) “Quasistatic Adhesive Contact of Piezoelectric Cylinders”, Nonlinear Analysis: Modelling and Control, 14(1), pp. 123–142. doi:10.15388/NA.2009.14.1.14536.

Abstract

We consider two mathematical models which describe the antiplane shear deformation of a piezoelectric cylinder in adhesive contact with a rigid foundation. The material is assumed to be electro-viscoelastic in the first model and electro-elastic in the second one. In both models the process is quasistatic, the foundation is electrically conductive and the adhesion is described with a surface variable, the bonding field. We derive a variational formulation of the models which is given by a system coupling two variational equations for the displacement and the electric potential fields, respectively, and a differential equation for the bonding field. Then we prove the existence of a unique weak solution to each model. We also investigate the behavior of the solution of the electro-viscoelastic problem as the viscosity converges to zero and prove that it converges to the solution of the corresponding electro-elastic problem.

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