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Applicable Analysis
An International Journal
Volume 97, 2018 - Issue 3
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Articles

Asymptotic stability for a non-autonomous full von Kármán beam with thermo-viscoelastic damping

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Pages 400-414 | Received 01 Oct 2016, Accepted 30 Nov 2016, Published online: 21 Dec 2016

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Mohammad Faraji Oskouie, Reza Ansari & Hessam Rouhi. (2022) Thermally nonlinear generalized coupled thermo-viscoelasticity of disks: a numerical variational approach. Waves in Random and Complex Media 32:6, pages 2796-2811.
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Moncef Aouadi. (2024) Some decay properties in extensible thermoelastic beam with Gurtin–Pipkin’s law. Mathematics and Mechanics of Solids.
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Moncef Aouadi & Souad Guerine. (2023) Observability and attractors of nonlinear Von Kármán beams. Nonlinear Differential Equations and Applications NoDEA 30:6.
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Moncef Aouadi & Souad Guerine. (2023) Upper Semicontinuity of Pullback Attractors for Nonlinear Full Von Kármán Beam. Acta Applicandae Mathematicae 186:1.
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Hanni Dridi. (2023) Energy Decay for von Kármán-Gurtin-Pipkin System. Acta Mathematicae Applicatae Sinica, English Series 39:2, pages 306-319.
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Madani Douib, Salah Zitouni & Abdelhak Djebabla. (2023) Well-posedness and energy decay for full von Kármán system of dynamic theromelasticity damped with distributed delay and past history terms. Filomat 37:13, pages 4195-4210.
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Moncef Aouadi & Souad Guerine. (2023) Decay in full von Kármán beam with temperature and microtemperatures effects. Mathematical Modelling of Natural Phenomena 18, pages 3.
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Wenjun Liu & Weifan Zhao. (2022) Quasi-Stability and Attractor for a Laminated-Coleman-Gurtin Beam Without Structural Damping. Acta Applicandae Mathematicae 180:1.
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Wenjun Liu & Weifan Zhao. (2021) Exponential and polynomial decay for a laminated beam with Fourier’s law of heat conduction and possible absence of structural damping. Frontiers of Mathematics in China 16:4, pages 997-1021.
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Abita Rahmoune. (2021) General decay for a viscoelastic equation with time-varying delay in the boundary feedback condition. Mathematics and Mechanics of Complex Systems 9:2, pages 127-142.
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Wenjun Liu, Dongqin Chen & Zhijing Chen. (2021) Long-Time Behavior for a Thermoelastic Microbeam Problem with Time Delay and the Coleman-Gurtin Thermal Law. Acta Mathematica Scientia 41:2, pages 609-632.
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Khaled Zennir & Mohamad Biomy. (2020) General Decay Rate of Solution for Love-Equation with Past History and Absorption. Mathematics 8:9, pages 1632.
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Wenjun Liu, Yue Luan, Yadong Liu & Gang Li. (2019) Well‐posedness and asymptotic stability to a laminated beam in thermoelasticity of type III. Mathematical Methods in the Applied Sciences 43:6, pages 3148-3166.
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Gang Li, Yue Luan & Wenjun Liu. (2019) Well-posedness and exponential stability of a thermoelastic-Bresse system with second sound and delay. Hacettepe Journal of Mathematics and Statistics, pages 1-16.
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Adel M. Al-Mahdi, Mohammad M. Al-Gharabli & Mohammad Kafini. (2019) A new general decay result for abstract evolution equation with time-dependent nonlinear dissipation. ANNALI DELL'UNIVERSITA' DI FERRARA 65:2, pages 201-230.
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Jianghao Hao & Fei Wang. (2019) General decay rate for weak viscoelastic wave equation with Balakrishnan–Taylor damping and time-varying delay. Computers & Mathematics with Applications 78:8, pages 2632-2640.
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Wenjun Liu & Weifan Zhao. (2017) Stabilization of a Thermoelastic Laminated Beam with Past History. Applied Mathematics & Optimization 80:1, pages 103-133.
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M. Sajjad Edalatzadeh & Kirsten A. Morris. (2019) Stability and Well-Posedness of a Nonlinear Railway Track Model. IEEE Control Systems Letters 3:1, pages 162-167.
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Shun-Tang Wu. (2019) Blow-Up of Solution for A Viscoelastic Wave Equation with Delay. Acta Mathematica Scientia 39:1, pages 329-338.
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Gang Li, Xiangyu Kong & Wenjun Liu. (2018) General decay for a laminated beam with structural damping and memory: The case of non-equal wave speeds. Journal of Integral Equations and Applications 30:1.
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Wenjun Liu & Miaomiao Chen. (2017) Well-posedness and exponential decay for a porous thermoelastic system with second sound and a time-varying delay term in the internal feedback. Continuum Mechanics and Thermodynamics 29:3, pages 731-746.
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