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Thermomechanical Behavior of Dissipative Composite Materials

Ouvrage scientifique
Auteur
CHATZIGEORGIOU, George
CHARALAMBAKIS, Nicolas
242382 School Civil Engineering [Thessaloniki]
303184 Aristotle University of Thessaloniki
CHEMISKY, Yves
ccMERAGHNI, Fodil
178323 Laboratoire d'Etude des Microstructures et de Mécanique des Matériaux [LEM3]

URI
http://hdl.handle.net/10985/17469
DOI
10.1016/c2017-0-01481-7
Date
2018

Résumé

This book presents theoretical and numerical tools for studying materials and structures under fully coupled thermomechanical conditions, with a special focus on composites. The authors cover many aspects of the modeling process and provide the reader with the knowledge required to: a) identify the conservation laws and thermodynamic principles that need to be respected by most solid materials; b) construct constitutive laws for various types of dissipative processes, both rate-independent and rate-dependent, by utilizing a rigorous thermodynamic framework; c) design robust numerical algorithms that permit accuracy and efficiency in the calculations of complicated constitutive laws; d) extend the theoretical and numerical investigation from homogeneous media to composites with periodic or random microstructure. The discussions and topics explored are useful for graduate students, as well as for young and advanced researchers, who wish to strengthen their knowledge of the application of thermodynamic principles on dissipative materials and homogenization theories for composites.

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LEM3_ISTE_2018_CHATZIGEORGIOU.pdf
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  • Laboratoire d'Etude des Microstructures et de Mécanique des Matériaux (LEM3)

Documents liés

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  • Periodic homogenization for fully coupled thermomechanical modeling of dissipative generalized standard materials 
    Article dans une revue avec comité de lecture
    CHATZIGEORGIOU, George; CHARALAMBAKIS, Nicolas; CHEMISKY, Yves; ccMERAGHNI, Fodil (Elsevier, 2016)
    The current work deals with periodic thermomechanical composite media, in which the material constituents are considered to obey the generalized standard materials laws. The aim is to provide a proper homogenization framework ...
  • Effective properties of dissipative composites under fully coupled thermomechanical processes 
    Conférence invitée
    CHATZIGEORGIOU, George; CHARALAMBAKIS, Nicolas; CHEMISKY, Yves; ccMERAGHNI, Fodil (2016)
    The current work deals with periodic composite media undergoing fully coupled thermomechanical loading. In these composites the material constituents are considered to obey the generalized standard materials laws. The aim ...
  • Multiscale modeling of periodic dissipative composites under thermomechanical loading conditions 
    Conférence invitée
    CHARALAMBAKIS, Nicolas; CHATZIGEORGIOU, George; CHEMISKY, Yves; ccMERAGHNI, Fodil (2017)
    The modern technological challenges on the engineering industry and the extensive advances in the materials science have caused a tremendous increase in the development of composites. Plenty of engineering and biomechanics ...
  • Mathematical homogenization of inelastic dissipative materials: a survey and recent progress 
    Article dans une revue avec comité de lecture
    CHARALAMBAKIS, Nicolas; CHATZIGEORGIOU, George; CHEMISKY, Yves; ccMERAGHNI, Fodil (Springer Verlag, 2017)
    In this paper, a review of papers on mathematical homogenization of dissipative composites under small strains and on the interplay between homogenization procedure and dissipation due to mechanical work is presented. ...
  • Multiscale modeling accounting for inelastic mechanisms of fuzzy fiber composites with straight or wavy carbon nanotubes 
    Article dans une revue avec comité de lecture
    CHATZIGEORGIOU, George; ccMERAGHNI, Fodil; CHARALAMBAKIS, Nicolas; ccBENAARBIA, Adil (Elsevier, 2020)
    This paper proposes a micromechanical approach aimed at identifying the response of unidirectional fuzzy fiber composites undergoing inelastic fields. Fuzzy fibers are reinforcement fibers coated with radially aligned ...

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