Micromechanical Approach of the Coated Inclusion Problem and Applications to Composite Materials

Author:

Cherkaoui M.1,Sabar H.1,Berveiller M.1

Affiliation:

1. Laboratoire de Physique et Me´canique des Mate´riaux, Institut Supe´rieur de Ge´nie Me´canique et Productique, URA CNRS 1215, Ile du Saulcy, Universite´ de Metz, 57045 Metz Cedex—France

Abstract

A micromechanical model using simultaneously Green’s function techniques and interfacial operators is proposed in order to solve the elastic inhomogeneous coated inclusion problem. For a composite material made of a non dilute concentration of coated inclusions and a homogeneous matrix, the interactions between the reinforcements are solved by a self-consistent scheme. The theoretical results for a composite of hollow spheres of glass in a polyester matrix are in good agreement with experimental measurements of Huang and Gibson.

Publisher

ASME International

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

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