Materials ScienceEngineering

P. Camanho, C. Dávila, M. Moura

2003.8.1JOURNAL OF COMPOSITE MATERIALS

DOI: 10.1177/0021998303034505

Abstract

A new decohesion element with the capability of dealing with crack propagation under mixed-mode loading is proposed and demonstrated. The element is used at the interface between solid finite elements to model the initiation and non-self-similar growth of delaminations in composite materials. A single relative displacement-based damage parameter is applied in a softening law to track the damage state of the interface and to prevent the restoration of the cohesive state during unloading. The softening law is applied in the three-parameter Benzeggagh-Kenane mode interaction criterion to predict mixed-mode delamination propagation. To demonstrate the accuracy of the predictions, steady-state delamination growth is simulated for quasi-static loading of various single mode and mixed-mode delamination test specimens and the results are compared with experimental data.

Citation format

CAMANHO, P.; DÁVILA, C.; MOURA, M. Numerical simulation of mixed-mode progressive delamination in composite materials. JOURNAL OF COMPOSITE MATERIALS, 2003, 37: 1415–1438.