A blended continuum damage and fracture mechanics method for progressive damage analysis of composite structures using XFEM

Journal Article (2018)
Author(s)

B.R. van Dongen

A. van Oostrum (TU Delft - Education AE)

D. Zarouchas (TU Delft - Structural Integrity & Composites)

Research Group
Structural Integrity & Composites
Copyright
© 2018 B.R. van Dongen, A. van Oostrum, D. Zarouchas
DOI related publication
https://doi.org/10.1016/j.compstruct.2017.10.007
More Info
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Publication Year
2018
Language
English
Copyright
© 2018 B.R. van Dongen, A. van Oostrum, D. Zarouchas
Research Group
Structural Integrity & Composites
Volume number
184
Pages (from-to)
512-522
Reuse Rights

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Abstract

Progressive damage analysis of composite structures remains problematic, holding back the full potential of these materials. Widely used continuum damage models feature a heuristical stiffness reduction to reflect damage, resulting in an unrealistic representation of damage patterns. To the end of a more realistic failure representation, this paper proposes a blended methodology for progressive damage analysis of such structures implemented in ABAQUS, combining continuum damage models with a more physically based approach from a fracture mechanics perspective. Matrix cracks are modelled through the eXtended Finite Element Method and delaminations through a cohesive zone model. Validation of the blend on an experimental campaign of open-hole tensile tests shows remarkable predictive capability, in good conformance to experimental failure loads, digital image correlation and acoustic emission measurements - particularly yielding more realistic damage patterns than state-of-the-art continuum damage model implementations.

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