Details
Title
Chambart, Marion Estelle
Sciper ID
196891
Affiliated labs
LSMS
Publications
2D dynamic fragmentation simulations using the cohesive elements approach.
Apports de la Méthode de Galerkin discontinue pour la modélisation de la fragmentation des matériaux fragiles en dynamique rapide.
Explicit non-local damage computations in dynamics: on the importance of the choice of the non-local variable.
How the obscuration-zone hypothesis affects fragmentation: Illustration with the cohesive-element method
Indentation induced damage in silicon nitride
Indentation induced damage in silicon nitride
Obscuration Zones and Secondary Waves Effects. A Numerical Study of Their Influence with the Cohesive Elements Method
On the influence of transgranular and intergranular failure mechanisms during dynamic loading of silicon nitride
Revealing microstructural parameters influencing strength and toughness of silicon nitride
Seismic safety evaluation of an arch dam with Akantu FE code developed at EPFL
Apports de la Méthode de Galerkin discontinue pour la modélisation de la fragmentation des matériaux fragiles en dynamique rapide.
Explicit non-local damage computations in dynamics: on the importance of the choice of the non-local variable.
How the obscuration-zone hypothesis affects fragmentation: Illustration with the cohesive-element method
Indentation induced damage in silicon nitride
Indentation induced damage in silicon nitride
Obscuration Zones and Secondary Waves Effects. A Numerical Study of Their Influence with the Cohesive Elements Method
On the influence of transgranular and intergranular failure mechanisms during dynamic loading of silicon nitride
Revealing microstructural parameters influencing strength and toughness of silicon nitride
Seismic safety evaluation of an arch dam with Akantu FE code developed at EPFL
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Chambart, M.
Chambart, Marion
Chambart, Marion
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