We propose an object kinetic Monte Carlo (OKMC) model for describing the microstructural evolution in pure tungsten under neutron irradiation. We here focus on low doses ( under 1 dpa), and we neglect transmutation in first approximation. The emphasis is mainly centred on an adequate description of neutron irradiation, the subsequent introduction of primary defects, and their thermal diffusion properties. Besides grain boundaries and the dislocation network, our model includes the contribution of carbon impurities, which are shown to have a strong influence on the onset of void swelling. Our parametric study analyses the quality of our model in detail, and confronts its predictions with experimental microstructural observations with satisfa...
The detailed study of the deterioration suffered by the materials of the components of a nuclear fac...
\u3cp\u3eThe economical lifetime of the divertor is a key concern for realizing nuclear fusion react...
The lifetime of the divertor in tokamak nuclear fusion reactors is uncertain, due to the severe heat...
The development of appropriate materials for fusion reactors that can sustain high neutron fluence a...
A multi-scale model is developed for the long-term microstructural evolution of tungsten under casca...
In nuclear fusion reactors, tungsten will be exposed to high neutron loads at high temperatures (>...
Tungsten becomes significantly more brittle when exposed to neutron irradiation, which can be detrim...
We have performed a systematic molecular dynamics investigation of the effects of overlap of collisi...
We describe the development of a new object kinetic Monte Carlo (kMC) code where the elementary defe...
Only limited data exist on the effect of neutron irradiation on the brittle to ductile transition (B...
In this work, the effect of neutron-induced radiation damage and transmutation on the microstructure...
In recent years, a number of systematic investigations of high-energy collision cascades in tungsten...
AbstractTwo grades of pure tungsten, single and polycrystalline, were irradiated for 282 days in the...
The detailed study of the deterioration suffered by the materials of the components of a nuclear fac...
\u3cp\u3eThe economical lifetime of the divertor is a key concern for realizing nuclear fusion react...
The lifetime of the divertor in tokamak nuclear fusion reactors is uncertain, due to the severe heat...
The development of appropriate materials for fusion reactors that can sustain high neutron fluence a...
A multi-scale model is developed for the long-term microstructural evolution of tungsten under casca...
In nuclear fusion reactors, tungsten will be exposed to high neutron loads at high temperatures (>...
Tungsten becomes significantly more brittle when exposed to neutron irradiation, which can be detrim...
We have performed a systematic molecular dynamics investigation of the effects of overlap of collisi...
We describe the development of a new object kinetic Monte Carlo (kMC) code where the elementary defe...
Only limited data exist on the effect of neutron irradiation on the brittle to ductile transition (B...
In this work, the effect of neutron-induced radiation damage and transmutation on the microstructure...
In recent years, a number of systematic investigations of high-energy collision cascades in tungsten...
AbstractTwo grades of pure tungsten, single and polycrystalline, were irradiated for 282 days in the...
The detailed study of the deterioration suffered by the materials of the components of a nuclear fac...
\u3cp\u3eThe economical lifetime of the divertor is a key concern for realizing nuclear fusion react...
The lifetime of the divertor in tokamak nuclear fusion reactors is uncertain, due to the severe heat...