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European Conference for Aerospace Sciences, Saint Petersurg : Russie, Fédération De (2011)
Virtual material approach to self-healing CMCs
Guillaume Couégnat 1, Gérard L. Vignoles 1, Virginie Drean 2, Christianne Mulat 3, William Ros 1, Grégory Perrot 3, Thomas Haurat 1, Jalal El-Yagoubi 1, Martin Eric 1, Mario Ricchiuto 2, 4, Christian Germain 3, Michel Cataldi 5
(2012-07-01)

We introduce an integrated software suite aiming at a numerical simulation of the whole life of Selfhealing Ceramic-Matrix Composites (CMCs) materials, featuring: (i) reinforcement weaving, (ii) matrix infiltration, (iii) mechanical behaviour including damage, (iv) thermal behaviour, and (v) selfhealing under oxidative gases. All simulations are developed in strong relationship with image analysis and synthesis. Preliminary results are presented and discussed.
1:  Laboratoire des Composites Thermostructuraux (LCTS)
CEA : DAM/DMAT - DEN/DTEC – CNRS : UMR5801 – Université Sciences et Technologies - Bordeaux I – SNECMA
2:  BACCHUS (INRIA Bordeaux - Sud-Ouest)
INRIA – Université de Bordeaux – CNRS : UMR5800
3:  Laboratoire de l'intégration, du matériau au système (IMS)
CNRS : UMR5218 – Université Sciences et Technologies - Bordeaux I – Institut Polytechnique de Bordeaux
4:  Institut de Mathématiques de Bordeaux (IMB)
CNRS : UMR5251 – Université Sciences et Technologies - Bordeaux I – Université Victor Segalen - Bordeaux II
5:  Snecma Propulsion Solide (SPS)
SAFRAN
Engineering Sciences/Materials
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