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Multi-site micromechanical modelling of thermo-elastic properties of heterogeneous materials
Authors:W. Kpobie  S. Ben Khlifa  N. Bonfoh  M. Fendler  P. Lipinski
Affiliation:1. Laboratoire de Mécanique Biomécanique Polymère Structures (LaBPS), EA 4632, Ecole Nationale d’Ingénieurs de Metz (ENIM), 1 route d’Ars Laquenexy CS 65820, 57078 Metz Cedex 3, France;2. Laboratoire d’Electronique et des Technologies de l’Information (CEA, LETI-Minatec), MINATEC Campus, 17 rue des Martyrs 38054 GRENOBLE Cedex 9, France
Abstract:A multi-site micromechanical modelling of the effective thermo-elastic properties of heterogeneous materials is derived from the proposed thermo-elastic integral equation. The fundamental solution based on the Green function of elasticity problem is used to derive a general expression of elastic and thermal strain concentration tensors. This approach enables the development of specific models such as multi-site Mori–Tanaka, self-consistent or generalized self-consistent schemes. The main advantage of the model resides in its capability to take into account the morphology as well as the topology of composites’ reinforcements. Sensitivity of the model predictions to some parameters has been analysed using the Generalized Mori–Tanaka (GMT) approximation. Its predictions have been compared to previous investigations to underline the effect of morphology and topology of reinforcements on the anisotropy of the global material properties.
Keywords:Micromechanical modelling   Thermo-elastic properties   Multi-site   Heterogeneous materials   Generalized Mori&ndash  Tanaka   Topologic anisotropy
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