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Laminated beams with thermoelasticity acting on the shear force

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Date
2023
Author(s)
Cabanillas Zannini, Victor Rafael
Quispe Méndez, Teófanes
Ramos, Anderson J. A.
Metadata
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Abstract
In this paper, we study the stabilization of a laminated beam system under the action of a new thermal coupling. Motivated by the work of Almeida Júnior et al. in the context of the Timoshenko system, we consider a thermoelastic coupling acting on the shear force. The present work constitutes a generalization of Almeida Júnior's paper because our study model considers an interfacial slip. More precisely, if we make the parameter (Formula presented.) of our system go to infinity, we obtain the Timoshenko beam system studied by the authors. We show that the weakly dissipative system of our manuscript is exponentially stable if, and only if, the wave propagation speeds are equal. Otherwise, we show that the system is polynomially stable and that the associated semigroup decays with rate (Formula presented.). Furthermore, we show that this decay rate is optimal.
URI
https://hdl.handle.net/20.500.12724/17931
DOI
https://doi.org/10.1002/mma.8584
How to cite
Cabanillas Zannini, V. R., Quispe Méndez, T. & Ramos, A. J. A. (2023). Laminated beams with thermoelasticity acting on the shear force. Mathematical Methods in the Applied Sciences, 46(1), 1352-1374. https://doi.org/10.1002/mma.8584
Publisher
John Wiley & Sons, Ltd.
Subject
Girders
Laminated materials
Elasticity
Shear (Mechanics)
Thermoelasticity
Journal
Mathematical Methods in the Applied Sciences
ISSN
0170-4214
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  • Estudios Generales [145]


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