The aim of this thesis is to understand and characterize the local mechanisms of deformation involved in the failure of a concrete sample in compression test. Thus, it is a question of establishing a correlation between these local mechanisms and the macroscopic response of the material. Concrete is considered as a multiphase material associating cement paste, aggregates and interfacial transition zones (ITZ). Because of its multiphase character, the stress is locally multiaxial. Understanding local mechanisms of generated deformation is based on a numerical modeling. The construction of a representative elementary volume (REV) as close as possible to the experimentally tested material was a part of this thesis subject. Cohesive zone model...
International audienceThe development of tools, using a micromechanical approach, predicting the mac...
Concrete is a material which microstructure evolves quickly after its mixing. Also, physical and che...
International audienceCement paste/aggregate bond influences durability of concrete subjected to lea...
L'objectif de ce travail de thèse est de comprendre et caractériser les mécanismes locaux de déforma...
International audienceThe microstructure of the Interfacial Transition Zone (ITZ) between the aggreg...
In this work, we presents an experimental study to characterize the mechanical properties at the loc...
This PhD thesis focuses on identifying concrete behavior under high triaxial loading. The study is c...
Concrete is a construction material the most widely used. This is a heterogeneous composite material...
This Ph.D. thesis aims at characterising and modeling the mechanical behavior of concrete at the mes...
International audienceThe influence of an Interfacial Transition Zone on mechanical behavior of conc...
Granular materials are extensively used in the field of civil engineering. These materials are eithe...
Ce travail de thèse est consacré à la caractérisation des propriétés mécaniques de l’interphase pâte...
AbstractIn this work, a micromechanics approach is proposed for correlating the dependence of the ma...
International audienceThe development of tools, using a micromechanical approach, predicting the mac...
Concrete is a material which microstructure evolves quickly after its mixing. Also, physical and che...
International audienceCement paste/aggregate bond influences durability of concrete subjected to lea...
L'objectif de ce travail de thèse est de comprendre et caractériser les mécanismes locaux de déforma...
International audienceThe microstructure of the Interfacial Transition Zone (ITZ) between the aggreg...
In this work, we presents an experimental study to characterize the mechanical properties at the loc...
This PhD thesis focuses on identifying concrete behavior under high triaxial loading. The study is c...
Concrete is a construction material the most widely used. This is a heterogeneous composite material...
This Ph.D. thesis aims at characterising and modeling the mechanical behavior of concrete at the mes...
International audienceThe influence of an Interfacial Transition Zone on mechanical behavior of conc...
Granular materials are extensively used in the field of civil engineering. These materials are eithe...
Ce travail de thèse est consacré à la caractérisation des propriétés mécaniques de l’interphase pâte...
AbstractIn this work, a micromechanics approach is proposed for correlating the dependence of the ma...
International audienceThe development of tools, using a micromechanical approach, predicting the mac...
Concrete is a material which microstructure evolves quickly after its mixing. Also, physical and che...
International audienceCement paste/aggregate bond influences durability of concrete subjected to lea...