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Preforming simulation of the reinforcements of woven composites: continuous approach within a commercial code

Authors :
Tarek Mabrouki
Emmanuelle Vidal-Salle
Muhammad Aurangzeb Khan
S. Gauthier
Philippe Boisse
Laboratoire de Mécanique des Contacts et des Structures [Villeurbanne] (LaMCoS)
Institut National des Sciences Appliquées de Lyon (INSA Lyon)
Université de Lyon-Institut National des Sciences Appliquées (INSA)-Université de Lyon-Institut National des Sciences Appliquées (INSA)-Centre National de la Recherche Scientifique (CNRS)
Source :
ESAFORM 2008 in International Journal of Material Forming, ESAFORM 2008 in International Journal of Material Forming, Apr 2008, France
Publication Year :
2008
Publisher :
HAL CCSD, 2008.

Abstract

Contrary to the classical continuous media of metallic structures, fibrous composites have a very specific mechanical behaviour due to their composition. The prediction of the properties in simulating the forming processes of woven reinforcements necessitates special analysis methods. The objective of this research work is to present the continuous approach which can be exploited within a commercial code (e.g. ABAQUS, used here). For that we treat, primarily, the elementary tests with continuous approach in large deformations with three different methods i.e. single element with unidirectional fibers, single element with bidirectional fibers and two superimposed elements with unidirectional fibers. The tests are performed using locally developed user material subroutine (VUMAT) for membrane elements in ABAQUS/Explicit. The numerical results of the elementary tests conform with each other and to the exact analytical solutions. Also, these tests are extended to the bias extension test, picture frame test, hemispherical dome forming and the international benchmark draping of double dome. The numerical outputs reasonably corroborate with experimental tests.

Details

Language :
French
Database :
OpenAIRE
Journal :
ESAFORM 2008 in International Journal of Material Forming, ESAFORM 2008 in International Journal of Material Forming, Apr 2008, France
Accession number :
edsair.doi.dedup.....4d877e928bdf01e50600ca4d12ffe82f