Behaviour of materials by Moussa Karama; Joël Alexis

By Moussa Karama; Joël Alexis

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The modeling is based on the integral equation that takes into account the multi-coated effect as well as the magnetoelectroelastic interfacial operators and global and local concentration tensors. Various types and kinds of coatings can be considered. The effective properties are predicted based on various micromechanical models such as Mori-Tanaka, Self Consistent and Incremental Self Consistent. These properties are presented in terms of the volume fractions of the multi-coated inclusions, thicknesses of the coatings, type and kind of inclusions.

H. H. Sperling. 4th ed, John Wiley & Sons 2006, ISBN-13 978-0-471-70606-9, p. 397-400. [6] M. 1036/0071455442, 2005, ISBN 0071455442. [7] F. Dal Maso et J. Meziere: Calcul des propriétés élastiques des tissus utilisés dans les matériaux composites, Oil & Gas Science and Technology - Rev. Curing: Encyclopedia of Polymer Science and Engineering 4, Wiley-Interscience 2nd edition 1986. [9] C. Barrere and F. Dal Maso : Résines époxy réticulées par des polyamines : structure et propriétés, Oil & Gas Science and Technology - Rev.

Aging model developed in this study is a transitional model, applied to the study of a composite structure in absorption phase. 1. Introduction : In recent years composite materials are widely used in the aerospace industry. The advantages of these materials are derived from their high strength, rigidity and lightness. More importantly, they have the potential to reduce the cost of construction, while improving structural reliability and increasing safety. Aircraft structural parts made of composite materials with polymeric matrix, subject to variables conditions and severe environments, require a good knowledge of their behavior under humidity and temperature.

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