Simulation Study of the Damage Mechanisms Appearing in a Cross Ply Composite Material Loaded in Uniaxial Tension
The objective of this paper is to predict the different damage mechanisms in multiple scales that can occur in a cross ply composite material loaded in uniaxial tension. The simulated composite material consists of four epoxy-glass fibre layers [0/90]s and the material of each layer is transversely...
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2021
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oai:doaj.org-article:23c021c4eb664a48894254d218a728422021-12-02T17:13:46ZSimulation Study of the Damage Mechanisms Appearing in a Cross Ply Composite Material Loaded in Uniaxial Tension2261-236X10.1051/matecconf/202134901001https://doaj.org/article/23c021c4eb664a48894254d218a728422021-01-01T00:00:00Zhttps://www.matec-conferences.org/articles/matecconf/pdf/2021/18/matecconf_iceaf2021_01001.pdfhttps://doaj.org/toc/2261-236XThe objective of this paper is to predict the different damage mechanisms in multiple scales that can occur in a cross ply composite material loaded in uniaxial tension. The simulated composite material consists of four epoxy-glass fibre layers [0/90]s and the material of each layer is transversely isotropic with viscous effects that occurred from micromechanical homogenization using Mori-Tanaka formulation, extended for visco-elastic materials. For the prediction of the cracking and interlaminar delamination, cohesive contacts were used and the final crack density results were compared with the corresponding experimental ones. Finally a microscale analysis was performed in a Representative Volume Element (RVE) to observe the matrix cracking behaviour in smaller scale.Tsivolas EleftheriosGergidis Leonidas N.Paipetis Alkiviadis S.EDP SciencesarticleEngineering (General). Civil engineering (General)TA1-2040ENFRMATEC Web of Conferences, Vol 349, p 01001 (2021) |
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Engineering (General). Civil engineering (General) TA1-2040 |
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Engineering (General). Civil engineering (General) TA1-2040 Tsivolas Eleftherios Gergidis Leonidas N. Paipetis Alkiviadis S. Simulation Study of the Damage Mechanisms Appearing in a Cross Ply Composite Material Loaded in Uniaxial Tension |
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The objective of this paper is to predict the different damage mechanisms in multiple scales that can occur in a cross ply composite material loaded in uniaxial tension. The simulated composite material consists of four epoxy-glass fibre layers [0/90]s and the material of each layer is transversely isotropic with viscous effects that occurred from micromechanical homogenization using Mori-Tanaka formulation, extended for visco-elastic materials. For the prediction of the cracking and interlaminar delamination, cohesive contacts were used and the final crack density results were compared with the corresponding experimental ones. Finally a microscale analysis was performed in a Representative Volume Element (RVE) to observe the matrix cracking behaviour in smaller scale. |
format |
article |
author |
Tsivolas Eleftherios Gergidis Leonidas N. Paipetis Alkiviadis S. |
author_facet |
Tsivolas Eleftherios Gergidis Leonidas N. Paipetis Alkiviadis S. |
author_sort |
Tsivolas Eleftherios |
title |
Simulation Study of the Damage Mechanisms Appearing in a Cross Ply Composite Material Loaded in Uniaxial Tension |
title_short |
Simulation Study of the Damage Mechanisms Appearing in a Cross Ply Composite Material Loaded in Uniaxial Tension |
title_full |
Simulation Study of the Damage Mechanisms Appearing in a Cross Ply Composite Material Loaded in Uniaxial Tension |
title_fullStr |
Simulation Study of the Damage Mechanisms Appearing in a Cross Ply Composite Material Loaded in Uniaxial Tension |
title_full_unstemmed |
Simulation Study of the Damage Mechanisms Appearing in a Cross Ply Composite Material Loaded in Uniaxial Tension |
title_sort |
simulation study of the damage mechanisms appearing in a cross ply composite material loaded in uniaxial tension |
publisher |
EDP Sciences |
publishDate |
2021 |
url |
https://doaj.org/article/23c021c4eb664a48894254d218a72842 |
work_keys_str_mv |
AT tsivolaseleftherios simulationstudyofthedamagemechanismsappearinginacrossplycompositematerialloadedinuniaxialtension AT gergidisleonidasn simulationstudyofthedamagemechanismsappearinginacrossplycompositematerialloadedinuniaxialtension AT paipetisalkiviadiss simulationstudyofthedamagemechanismsappearinginacrossplycompositematerialloadedinuniaxialtension |
_version_ |
1718381309570580480 |