International audienceThis article presents a new model which aims at the prediction of the expansion induced by Alkali Silica Reaction (ASR) and the description of the chemical evolution of affected concretes. It is based on the description of the transport and reaction of alkalis and calcium ions within a Relative Elementary Volume (REV). It takes into account the influence of the reactive aggregate size grading on ASR, i.e. the effect of the simultaneous presence of different sized reactive aggregates within concrete. The constitutive equations are detailed and fitted using experimental results. Results from numerical simulations are presented and compared with experiments.Cet article présente un modèle qui a pour but la prédiction du go...
The alkali-silica reaction (ASR) is a durability issue of concrete. The amorphous silica of aggregat...
Alkali-silica reaction (ASR) is a major concrete durability problem, resulting in significant mainte...
A 3D reactive transport model at microscale is proposed for simulating the chemical reaction process...
International audienceThis article presents a new model which aims at the prediction of the expansio...
International audienceThis article presents a fracture mechanics model for Alkali-Silica Reaction. T...
International audienceAlkali-Silica Reaction (ASR) is a concrete pathology due to chemical reactions...
A new diffusion-reaction model for the potentially deleterious Alkali-Silica Reaction (ASR) process ...
This paper examines the effects of size range, distribution and content of reactive aggregate on con...
International audienceA fracture mechanics model for alkali-silica reaction (ASR) is presented that ...
International audienceThe effect of the size of the aggregate on ASR expansion has already been well...
The alkali silica reaction (ASR) in concrete evolves at different scales. The chemical reaction happ...
International audienceThis article is a focus on the anisotropic behavior of concrete under Alkali- ...
The alkali-silica reaction (ASR) is a deleterious reaction that occurs in cementitious mixtures like...
The alkali-silica reaction (ASR) is a durability issue of concrete. The amorphous silica of aggregat...
Alkali-silica reaction (ASR) is a major concrete durability problem, resulting in significant mainte...
A 3D reactive transport model at microscale is proposed for simulating the chemical reaction process...
International audienceThis article presents a new model which aims at the prediction of the expansio...
International audienceThis article presents a fracture mechanics model for Alkali-Silica Reaction. T...
International audienceAlkali-Silica Reaction (ASR) is a concrete pathology due to chemical reactions...
A new diffusion-reaction model for the potentially deleterious Alkali-Silica Reaction (ASR) process ...
This paper examines the effects of size range, distribution and content of reactive aggregate on con...
International audienceA fracture mechanics model for alkali-silica reaction (ASR) is presented that ...
International audienceThe effect of the size of the aggregate on ASR expansion has already been well...
The alkali silica reaction (ASR) in concrete evolves at different scales. The chemical reaction happ...
International audienceThis article is a focus on the anisotropic behavior of concrete under Alkali- ...
The alkali-silica reaction (ASR) is a deleterious reaction that occurs in cementitious mixtures like...
The alkali-silica reaction (ASR) is a durability issue of concrete. The amorphous silica of aggregat...
Alkali-silica reaction (ASR) is a major concrete durability problem, resulting in significant mainte...
A 3D reactive transport model at microscale is proposed for simulating the chemical reaction process...