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Exponential and polynomial stabilization of laminated beams with two history memories

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Date
2023
Author(s)
Quispe Méndez, Teófanes
Cabanillas Zannini, Victor Rafael
Feng, Baowei
Metadata
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Abstract
In this paper, a laminated beam system with two history-type controls is studied. One of the controls acts on the effective rotation angle and the other on the slip equation. The latter control replaces the structural damping usually considered in this model in the literature. Using the semi-group of linear operators approach, we prove the system is globally well-posed. We establish the exponential stability of the system provided the equal-speed waves propagation holds. Otherwise, the system lacks exponential stability. The polynomial decay with rate t- 41 is also proved using the theorem due to Borichev and Tomilov.
URI
https://hdl.handle.net/20.500.12724/18751
DOI
https://doi.org/10.3934/mcrf.2022037
How to cite
Quispe Méndez, T., Cabanillas, V. R. & Feng, B. (2023). Exponential and polynomial stabilization of laminated beams with two history memories. Mathematical Control and Related Fields, 13(4), 1258-1281. https://doi.org/10.3934/mcrf.2022037
Publisher
American Institute of Mathematical Sciences
Subject
Girders
Laminated materials
Viscoelasticity
Damping (Mechanics)
Partial differential equations
Journal
Mathematical Control and Related Fields
ISSN
2156-8472
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  • Estudios Generales [145]


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