En dessous du point de gel de l’eau dans les pores du ciment, la cryosuccion est considérée comme responsable de sa détérioration. La thermodynamique et la dynamique de la couche électrolytique physisorbée à la surface des pores sont étudiées par simulation moléculaire pour comprendre sa structure, sa stabilité en température et son rôle dans la détérioration par cryo-succion. Trois modèles de nanopores hydrophiles sont considérés: silices hydroxylée ou à charge de surface compensée par des ions Ca2+ ainsi qu'un modèle de ciment réaliste. L'eau vicinale adsorbée est fortement perturbée indépendamment de la température (de 175 à 300 K) sur 2-3 couches moléculaires. Les ions sont proches des surfaces et ne s’organisent pas en une couche diffu...
Diffusion processes are crucial to the durability and confinement capacity of cement-based materials...
Responsable CEA : Rébiscoul Diane, Rieutord FrancoisNational audiencePrediction of material behavior...
International audienceHydroxyl surface density in porous silica drops down to nearly zero when the p...
En dessous du point de gel de l eau dans les pores du ciment, la cryosuccion est considérée comme re...
International audienceMolecular-level knowledge of the thermodynamic, structural, and transport prop...
Abstract Molecular-level knowledge of the thermodynamic, structural, and transport properties of wat...
Hydrated cements have pore sizes that range from a few nanometers to microns. The physical and chem...
Hydroxyapatite, the main mineral phase of mammalian tooth enamel and bone, grows within nanoconfined...
ABSTRACT: Water within pores of cementitious materials plays a crucial role in the damage processes ...
International audienceThe processes associated with the hydrodynamics in calcium silicate hydrates n...
International audienceWater within pores of cementitious materials plays a crucial role in the damag...
Molecular-scale knowledge of the thermodynamic, structural, and transport properties of water confin...
Hydroxyapatite, the main mineral phase of mammalian tooth enamel and bone, grows within nanoconfined...
Diffusion processes are crucial to the durability and confinement capacity of cement-based materials...
Responsable CEA : Rébiscoul Diane, Rieutord FrancoisNational audiencePrediction of material behavior...
International audienceHydroxyl surface density in porous silica drops down to nearly zero when the p...
En dessous du point de gel de l eau dans les pores du ciment, la cryosuccion est considérée comme re...
International audienceMolecular-level knowledge of the thermodynamic, structural, and transport prop...
Abstract Molecular-level knowledge of the thermodynamic, structural, and transport properties of wat...
Hydrated cements have pore sizes that range from a few nanometers to microns. The physical and chem...
Hydroxyapatite, the main mineral phase of mammalian tooth enamel and bone, grows within nanoconfined...
ABSTRACT: Water within pores of cementitious materials plays a crucial role in the damage processes ...
International audienceThe processes associated with the hydrodynamics in calcium silicate hydrates n...
International audienceWater within pores of cementitious materials plays a crucial role in the damag...
Molecular-scale knowledge of the thermodynamic, structural, and transport properties of water confin...
Hydroxyapatite, the main mineral phase of mammalian tooth enamel and bone, grows within nanoconfined...
Diffusion processes are crucial to the durability and confinement capacity of cement-based materials...
Responsable CEA : Rébiscoul Diane, Rieutord FrancoisNational audiencePrediction of material behavior...
International audienceHydroxyl surface density in porous silica drops down to nearly zero when the p...