Ouafik, Youssef (2021) Modelling and simulation of a dynamic contact problem in thermo-piezoelectricity. Engineering and Applied Science Letters, 4 (2). pp. 43-52. ISSN 26179695
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Abstract
In this work, we numerically study a dynamic frictional contact problem between a thermo-piezoelectric body and a conductive foundation. The linear thermo-electro-elastic constitutive law is employed to model the thermo-piezoelectric material. The contact is modelled by the Signorini condition and the friction by the Coulomb law. A frictional heat generation and heat transfer across the contact surface are assumed. The heat exchange coefficient is assumed to depend on contact pressure. Hybrid formulation is introduced, it is a coupled system for the displacement field, the electric potential, the temperature and two Lagrange multipliers. The discrete scheme of the coupled system is introduced based on a finite element method to approximate the spatial variable and an Euler scheme to discretize the time derivate. The thermo-mechanical contact is treated by using an augmented Lagrangian approach. A solution algorithm is discussed and implemented. Numerical simulation results are reported, illustrating the mechanical behavior related to the contact condition.
Item Type: | Article |
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Subjects: | East Asian Archive > Engineering |
Depositing User: | Unnamed user with email support@eastasianarchive.com |
Date Deposited: | 08 Feb 2023 09:06 |
Last Modified: | 23 Apr 2025 12:52 |
URI: | http://authors.go2articles.com/id/eprint/195 |