International audienceThe aim of the present work is to introduce a thermodynamic model to describe the growth of an oxide layer on a metallic substrate. More precisely, this paper offers a study of oxygen dissolution into a solid, and its consequences on the apparition of mechanical stresses. They strongly influence the oxidation processes and may be, in some materials, responsible for cracking. To realize this study, mechanical considerations are introduced into the classical diffusion laws. Simulations were made for the particular case of uranium dioxide, which undergoes the chemical fragmentation. According to our simulations, the hypothesis of a compression stress field into the oxidised UO2 compound near the internal interface is cons...
International audienceCracking is observed when a UO2 single crystal is oxidised in air. Previous st...
Les propriétés mécaniques du combustibles nucléaire sont un problème complexe qui fait intervenir de...
Received: 04.02.2021. Revised: 30.03.2021. Accepted: 30.03.2021. Available online: 31.03.2021.This a...
International audienceThe aim of the present work is to introduce a thermodynamic model to describe ...
This paper offers a study of oxygen dissolution into a solid, and its consequences on the mechanical...
International audienceThe growth of a U3O7 oxide layer during the anionic oxidation of UO2 pellets i...
The aim of this PhD work is to highlight the interactions between the mechanical stress and the chem...
Le dioxyde d'uranium (UO2) est le combustible de référence pour les réacteurs nucléaires à eau press...
Spent nuclear fuel is composed of ≈95% UO2, and upon storage in geologic repository the fuel itse...
International audienceDissolution is a key step in several industrial processes. It is especially a ...
The gaseous oxidation of uranium and its alloys is a complex process. Material transport across the ...
En rampe de puissance, le combustible nucléaire est soumis à d'importantes contraintes thermiques e...
L'objectif de ce travail est de caractériser et de modéliser le comportement mécanique des oxydes d'...
International audienceDissolution is a key step in several industrial processes. It is especially a ...
International audienceDissolution is a milestone of the head-end of hydrometallurgical processes use...
International audienceCracking is observed when a UO2 single crystal is oxidised in air. Previous st...
Les propriétés mécaniques du combustibles nucléaire sont un problème complexe qui fait intervenir de...
Received: 04.02.2021. Revised: 30.03.2021. Accepted: 30.03.2021. Available online: 31.03.2021.This a...
International audienceThe aim of the present work is to introduce a thermodynamic model to describe ...
This paper offers a study of oxygen dissolution into a solid, and its consequences on the mechanical...
International audienceThe growth of a U3O7 oxide layer during the anionic oxidation of UO2 pellets i...
The aim of this PhD work is to highlight the interactions between the mechanical stress and the chem...
Le dioxyde d'uranium (UO2) est le combustible de référence pour les réacteurs nucléaires à eau press...
Spent nuclear fuel is composed of ≈95% UO2, and upon storage in geologic repository the fuel itse...
International audienceDissolution is a key step in several industrial processes. It is especially a ...
The gaseous oxidation of uranium and its alloys is a complex process. Material transport across the ...
En rampe de puissance, le combustible nucléaire est soumis à d'importantes contraintes thermiques e...
L'objectif de ce travail est de caractériser et de modéliser le comportement mécanique des oxydes d'...
International audienceDissolution is a key step in several industrial processes. It is especially a ...
International audienceDissolution is a milestone of the head-end of hydrometallurgical processes use...
International audienceCracking is observed when a UO2 single crystal is oxidised in air. Previous st...
Les propriétés mécaniques du combustibles nucléaire sont un problème complexe qui fait intervenir de...
Received: 04.02.2021. Revised: 30.03.2021. Accepted: 30.03.2021. Available online: 31.03.2021.This a...