Well-posedness and attractors for a memory-type thermoelastic Timoshenko beam acting on shear force
DOI10.11650/TJM/191106zbMath1461.35064OpenAlexW2992577558MaRDI QIDQ2663364
Cyril Dennis Enyi, Soh Edwin Mukiawa
Publication date: 16 April 2021
Published in: Taiwanese Journal of Mathematics (Search for Journal in Brave)
Full work available at URL: https://projecteuclid.org/euclid.twjm/1575255740
global attractorone space dimensionexponential attractorTimoshenko systemparabolic-hyperbolic system
Asymptotic behavior of solutions to PDEs (35B40) Attractors (35B41) Thermal effects in solid mechanics (74F05) Integro-partial differential equations (35R09) Initial-boundary value problems for systems of nonlinear higher-order PDEs (35G61)
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Cites Work
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- Quasi-stability property and attractors for a semilinear Timoshenko system
- General decay for a porous-thermoelastic system with memory: the case of nonequal speeds
- General decay for a porous thermoelastic system with memory: the case of equal speeds
- Energy decay in a Timoshenko-type system with history in thermoelasticity of type III
- Uniform decay in a Timoshenko-type system with past history
- Energy decay for Timoshenko systems of memory type.
- General stability of memory-type thermoelastic Timoshenko beam acting on shear force
- Uniform decay rates for the energy of Timoshenko system with the arbitrary speeds of propagation and localized nonlinear damping
- On the control of a viscoelastic damped Timoshenko-type system
- On the stability of Timoshenko systems with Gurtin-Pipkin thermal law
- Asymptotic behavior of weakly dissipative Timoshenko system with internal constant delay feedbacks
- Long-time dynamics for a nonlinear Timoshenko system with delay
- Long-time behavior of second order evolution equations with nonlinear damping
- Von Karman Evolution Equations
- General energy decay estimates of Timoshenko systems with frictional versus viscoelastic damping
- Boundary Control of the Timoshenko Beam
- DYNAMICS OF TRANSVERSELY VIBRATING BEAMS USING FOUR ENGINEERING THEORIES
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