International audienceTungsten is the privileged option as plasma-facing material for the divertor region of ITER and DEMO tokamaks. Under repeated high thermal fluxes (10 MW/m² in steady state and 20 MW/m² in quasi-steady state), Plasma-Facing Units (PFU) can be damaged through thermal fatigue phenomena, which are enhanced by in-service tungsten recrystallization. Slowing down tungsten recrystallization is thus a way to optimize PFU lifetime. Tungsten-recrystallization kinetics is known to depend upon the initial microstructure. In the present paper, a mean-field model is developed to highlight microstructural effects upon tungsten restoration mechanisms at high temperature. The effects of grain size, initial recrystallized fraction, initi...
In nuclear fusion devices the surfaces directly facing the plasma are irradiated with high energy fl...
International audienceUnderstanding of recrystallization phenomenon is essential to apprehend damage...
Tungsten has been chosen as the main candidate for plasma facing components (PFCs) in the magnetic c...
International audienceTungsten is the privileged option as plasma-facing material for the divertor r...
International audienceFor ITER divertor, plasma facing components are made with tungsten as armor ma...
Because of its extraordinary material properties, like its high melting point and thermal stress res...
International audienceEstimating the lifetime of W-armoured divertor components is of great importan...
Tungsten and tungsten-based alloys are the leading material choices for the divertor plasma facing c...
A multi-scale model is developed for the long-term microstructural evolution of tungsten under casca...
Surface damage and structure evolution of the full tungsten ITER divertor under transient heat loads...
\u3cp\u3eThe economical lifetime of the divertor is a key concern for realizing nuclear fusion react...
The influence of recrystallization on thermal shock resistance has been identified as an issue that ...
Tungsten and its alloys have been extensively studied to be used as materials for plasma facing comp...
International audienceMeasurement of recovery and recrystallization kinetics of tungsten at high tem...
In nuclear fusion devices the surfaces directly facing the plasma are irradiated with high energy fl...
International audienceUnderstanding of recrystallization phenomenon is essential to apprehend damage...
Tungsten has been chosen as the main candidate for plasma facing components (PFCs) in the magnetic c...
International audienceTungsten is the privileged option as plasma-facing material for the divertor r...
International audienceFor ITER divertor, plasma facing components are made with tungsten as armor ma...
Because of its extraordinary material properties, like its high melting point and thermal stress res...
International audienceEstimating the lifetime of W-armoured divertor components is of great importan...
Tungsten and tungsten-based alloys are the leading material choices for the divertor plasma facing c...
A multi-scale model is developed for the long-term microstructural evolution of tungsten under casca...
Surface damage and structure evolution of the full tungsten ITER divertor under transient heat loads...
\u3cp\u3eThe economical lifetime of the divertor is a key concern for realizing nuclear fusion react...
The influence of recrystallization on thermal shock resistance has been identified as an issue that ...
Tungsten and its alloys have been extensively studied to be used as materials for plasma facing comp...
International audienceMeasurement of recovery and recrystallization kinetics of tungsten at high tem...
In nuclear fusion devices the surfaces directly facing the plasma are irradiated with high energy fl...
International audienceUnderstanding of recrystallization phenomenon is essential to apprehend damage...
Tungsten has been chosen as the main candidate for plasma facing components (PFCs) in the magnetic c...