In this paper a general model for the analysis of concrete as multiphase porous material, obtained from microscopic scale by applying the so-called Hybrid Mixture Theory, is presented. The final formulation of the governing equations at macro-level is obtained by upscaling their local form from the micro-scale. This procedure allows for taking into account both bulk phases and interfaces of the multiphase system, to define several quantities used in the model and to obtain some thermodynamic restrictions imposed on the evolution equations describing the material deterioration. Two specific forms of the general model adapted to the case of concrete structures under fire and to the case of concrete degradation due to the leaching process are ...
The alkali-silica reaction (ASR) in concrete is one of the most harmful deterioration processes, whi...
In the present contribution, the effective mechanical, diffusive, and chemo-expansive properties of ...
Application of mechanics of multi-phase porous media for modeling cement based materials at high tem...
In this paper a general model for the analysis of concrete as multiphase porous material, obtained f...
In this work a general model for the analysis of concrete as multiphase porous material, obtained fr...
In this paper a general model for the analysis of concrete as multiphase porous material, based on t...
A mathematical and numerical model to predict the non-linear behaviour of concrete as a multiphase p...
Durability and strength capabilities of concrete materials are vastly affected by the combined action...
Abstract:- A mathematical and numerical model to predict the non-linear behaviour of concrete as mul...
A mathematical and numerical model to predict the non-linear behaviour of concrete as multiphase por...
In this work we present a general model for the analysis of multiphase flow in deforming porous medi...
This work deals with a new mathematical/numerical model for the analysis of the behaviour of concret...
The mechanical response of concrete is complex and as other composite materials, multiscale modellin...
A general approach to modelling chemical degradation processes in cement based materials, due to com...
Concrete is investigated as both a homogeneous and a composite material model made of cement paste a...
The alkali-silica reaction (ASR) in concrete is one of the most harmful deterioration processes, whi...
In the present contribution, the effective mechanical, diffusive, and chemo-expansive properties of ...
Application of mechanics of multi-phase porous media for modeling cement based materials at high tem...
In this paper a general model for the analysis of concrete as multiphase porous material, obtained f...
In this work a general model for the analysis of concrete as multiphase porous material, obtained fr...
In this paper a general model for the analysis of concrete as multiphase porous material, based on t...
A mathematical and numerical model to predict the non-linear behaviour of concrete as a multiphase p...
Durability and strength capabilities of concrete materials are vastly affected by the combined action...
Abstract:- A mathematical and numerical model to predict the non-linear behaviour of concrete as mul...
A mathematical and numerical model to predict the non-linear behaviour of concrete as multiphase por...
In this work we present a general model for the analysis of multiphase flow in deforming porous medi...
This work deals with a new mathematical/numerical model for the analysis of the behaviour of concret...
The mechanical response of concrete is complex and as other composite materials, multiscale modellin...
A general approach to modelling chemical degradation processes in cement based materials, due to com...
Concrete is investigated as both a homogeneous and a composite material model made of cement paste a...
The alkali-silica reaction (ASR) in concrete is one of the most harmful deterioration processes, whi...
In the present contribution, the effective mechanical, diffusive, and chemo-expansive properties of ...
Application of mechanics of multi-phase porous media for modeling cement based materials at high tem...