Damage accumulation processes and life prediction in unidirectional composites

Author:

Blassiau S12,Bunsell A.R1,Thionnet A13

Affiliation:

1. Centre des Matériaux Mines ParisParistech, CNRS UMR 7633, BP 87, 91003 Evry cedex, France

2. Gaz de France-Direction de la Recherche361, Avenue du Président Wilson, BP 33, 93211 Saint-Denis La Plaine cedex, France

3. Université de BourgogneMirande, BP 47870, 21078 Dijon, France

Abstract

A parallel has been made between the design and the failure of some composite structures, such as pressure vessels, and that of a unidirectional carbon fibre-reinforced epoxy resin. This type of composite has many characteristics that make it attractive, however, long-term damage accumulation in it, when under load, is not understood in any quantitative manner. It is therefore necessary to identify the processes involved in the degradation of the composite when subjected to long-term loading. Acoustic emission (AE) has been used to detect damage in the composite material and to relate the microstructural damage processes to the activity recorded from composite specimens through the development of a detailed analytical model of the damage processes involved. A multiscale model beginning at the scale of individual fibres and the surrounding matrix has been developed by taking into account the accumulated effects of individual fibre breaks on the behaviour of the whole composite and therefore explains the AE detected during the tests.

Publisher

The Royal Society

Subject

General Physics and Astronomy,General Engineering,General Mathematics

Reference36 articles.

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2. Tensile Strength of Unidirectionally Reinforced Composites — II

3. Baxevanakis C. 1994 Comportement statistique à rupture des composites stratifies. Ph.D. thesis Ecole Nationale Supérieure des Mines de Paris.

4. Time evolution of stress redistribution around multiple fiber breaks in a composite with viscous and viscoelastic matrices

5. Blassiau S. 2005 Etude expérimentale et numérique de la prévision de durée de vie des réservoirs composites. Ph.D. thesis Ecole Normale Supérieure des Mines de Paris.

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