We pursue the study of fatigue accumulation in an oscillating elastoplastic beam under the additional hypothesis that the material can partially recover by the effect of melting. The full system consists of the momentum and energy balance equations, an evolution equation for the fatigue rate, and a differential inclusion for the phase dynamics. The main result consists in proving the existence and uniqueness of a strong solution.

A new phase field model for material fatigue in an oscillating elastoplastic beam / Eleuteri, M., Kopfová, J., Krejčí, P.. - In: DISCRETE AND CONTINUOUS DYNAMICAL SYSTEMS. - ISSN 1078-0947. - 35:6(2015), pp. 2465-2495. [10.3934/dcds.2015.35.2465]

A new phase field model for material fatigue in an oscillating elastoplastic beam

ELEUTERI, Michela;
2015

Abstract

We pursue the study of fatigue accumulation in an oscillating elastoplastic beam under the additional hypothesis that the material can partially recover by the effect of melting. The full system consists of the momentum and energy balance equations, an evolution equation for the fatigue rate, and a differential inclusion for the phase dynamics. The main result consists in proving the existence and uniqueness of a strong solution.
2015
Inglese
SPRINGFIELD
35
6
2465
2495
https://www.aimsciences.org/journals/displayArticlesnew.jsp?paperID=10680
Elastoplastic beam; Material fatigue; Phase transition; Prandtl-Ishlinskii operator; Thermo-elasto-plasticity; Discrete Mathematics and Combinatorics; Applied Mathematics; Analysis
none
info:eu-repo/semantics/article
Contributo su RIVISTA::Articolo su rivista
262
A new phase field model for material fatigue in an oscillating elastoplastic beam / Eleuteri, M., Kopfová, J., Krejčí, P.. - In: DISCRETE AND CONTINUOUS DYNAMICAL SYSTEMS. - ISSN 1078-0947. - 35:6(2015), pp. 2465-2495. [10.3934/dcds.2015.35.2465]
Eleuteri, Michela; Kopfová, Jana; Krejčí, Pavel
3
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11380/1083391
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