Fatigue Mechanisms Under Low Energy Repeated Impact of Composite Laminates

Author:

Boukhili Rachid1,Bojji Chakib1,Gauvin Raymond1

Affiliation:

1. CRASP, Department of Mechanical Engineering Ecole Polytechnique 2900 Boul. Edouard-Montpetit Montréal, PQ, Canada

Abstract

This investigation deals with the fatigue behaviour under low energy repeated impact (LERI) of quasi-isotropic graphite/epoxy composite plates. The damage growth during the test was monitored by ultrasonic C-scan imaging. The damage area plotted as function of the number of impacts displays a three stages pattern behaviour. Stage I corresponds to a matrix cracking of the region under the impactor, stage II corre sponds to a rapid delamination propagation and stage III to a slow delamination propaga tion. The relative extent and the damage growth rate in stage II increase with the impact energy E I. The number of impacts NIF corresponding to the transition between stage I and stage II is governed by an impact-fatigue curve in the form of EI = C log (NIF) + E 0 where E0 is the threshold impact energy that induces a delamination in one impact and C constant denoting the damage tolerance of the material.

Publisher

SAGE Publications

Subject

Materials Chemistry,Polymers and Plastics,Mechanical Engineering,Mechanics of Materials,Ceramics and Composites

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