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Longtime dynamics for a novel piezoelectric beam model with creep and thermo-viscoelastic effects
Institution:1. Department of Mathematics, State University of Maringá, 87020-900, Maringá, PR, Brazil;2. Departement of Mathematics, Faculty of Sciences of Monastir, Monastir university, 5019 Monastir, Tunisia;3. Department of Mathematics, Faculty of Sciences of Gabes, University of Gabes, 6029 Gabes, Tunisia;4. Institute of Science and Technology, Federal University of São Paulo, 12247-014, São José dos Campos, SP, Brazil
Abstract:In this work, a novel fully-dynamic piezoelectric beam model is considered. Electromagnetic and thermal effects are taken into consideration by Maxwell’s equations and the Coleman–Gurtin law (instead of the Fourier’s law), respectively. Our model accounts also for thermal and electromagnetic (creep) past histories, which are in line with the time response of PVDF at the applied stress in the longitudinal direction. Under suitable assumptions, the existence and uniqueness of solutions are proved by the semigroup theory. The main purpose of this paper is to establish the longtime dynamics of the model. Therefore, the quasi-stability property of the model and the existence of smooth global attractors with finite fractal dimension are obtained. The existence of exponential attractors for the associated dynamical system is also proved.
Keywords:Thermo-piezo-magnetic beam  Viscoelastic  Past history  Global attractor  Coleman–Gurtin law  Creep
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