International audienceUnexpected expansion can be a cause of damage in quasi-brittle materials such as concrete, fired clays or rocks. Such expansions can be due to chemical reactions (alkali-silica reaction – ASR, sulfate attack) or physical phenomena (frost, transport of fluids). Expansion is caused by two main mechanisms: matrix deformation due to the pressure initiated by the formation of new phases in the porosity of the material, and matrix cracking, which increases the apparent swelling of the matrix. In this work, a poromechanical model is proposed to reproduce expansion in materials resulting from single or multiple pressures. In this model, plastic deformation is used to represent permanent strain due to diffuse cracking induced b...
International audienceThe mechanical effects of alkali-silica reaction (ASR) have to be modeled in o...
WOS:000385600100060International audienceThe safety and durability of concrete structures are signif...
Prédire l’évolution de la perméabilité avec la fissuration constitue un objectif primordial afin d’é...
International audienceUnexpected expansion can be a cause of damage in quasi-brittle materials such ...
A multi-scale poromechanical model of damage induced by Delayed Ettringite Formation (DEF) as a cons...
Expansive reactions damage porous materials through the formation of reaction products of a volume i...
International audienceAlkali-Silica Reaction is a deleterious chemical reaction which affects concre...
Das vorgestellte Materialmodell ermöglicht die Beschreibung des Verformungsverhaltens von Beton unte...
To model the complex degradation phenomena occurring in concrete affected by alkali–silica reaction ...
International audienceIn the context of the lifetime extension of nuclear power plants, the french I...
International audienceIn the context of lifetime extension of nuclear power plants, the french Insti...
AbstractA novel lattice model is proposed for linking experimentally measured porosity of concrete t...
International audienceChemical reactions can lead to the expansion of the geomaterial because of the...
International audienceThe mechanical effects of alkali-silica reaction (ASR) have to be modeled in o...
WOS:000385600100060International audienceThe safety and durability of concrete structures are signif...
Prédire l’évolution de la perméabilité avec la fissuration constitue un objectif primordial afin d’é...
International audienceUnexpected expansion can be a cause of damage in quasi-brittle materials such ...
A multi-scale poromechanical model of damage induced by Delayed Ettringite Formation (DEF) as a cons...
Expansive reactions damage porous materials through the formation of reaction products of a volume i...
International audienceAlkali-Silica Reaction is a deleterious chemical reaction which affects concre...
Das vorgestellte Materialmodell ermöglicht die Beschreibung des Verformungsverhaltens von Beton unte...
To model the complex degradation phenomena occurring in concrete affected by alkali–silica reaction ...
International audienceIn the context of the lifetime extension of nuclear power plants, the french I...
International audienceIn the context of lifetime extension of nuclear power plants, the french Insti...
AbstractA novel lattice model is proposed for linking experimentally measured porosity of concrete t...
International audienceChemical reactions can lead to the expansion of the geomaterial because of the...
International audienceThe mechanical effects of alkali-silica reaction (ASR) have to be modeled in o...
WOS:000385600100060International audienceThe safety and durability of concrete structures are signif...
Prédire l’évolution de la perméabilité avec la fissuration constitue un objectif primordial afin d’é...