We have performed a combined study using transmission electron microscopy (TEM), nuclear reaction analysis (NRA) and nano-indentation (NI) techniques to reveal the impact of high flux plasma exposure on the properties of a sub-surface region of the commercially available pure tungsten fabricated following the ITER specification. TEM examination revealed the formation of a dense dislocation network and dislocation tangles, resulting in a strong increase in the dislocation density by at least one order of magnitude as compared to the bulk density. The plasma-induced dislocation microstructure vanishes within a depth of about 10–15 μm from the top of the exposed surface. Surface hardness after the plasma exposure was characterized by NI and wa...
The morphology changes induced by low energy deuterium ions on tungsten surfaces is studied for part...
The morphology changes induced by low energy deuterium ions on tungsten surfaces is studied for part...
Microstructure induced by plastic deformation at 600 °C in as-fabricated and recrystallized tungsten...
We have performed a combined study using transmission electron microscopy (TEM), nuclear reaction an...
We have performed a combined study using transmission electron microscopy (TEM), nuclear reaction an...
We have performed high flux plasma exposure of tungsten and subsequent microstructural characterizat...
Surface hardness of tungsten after high flux deuterium plasma exposure has been characterized by nan...
Intense hydrogen plasma interactions with tungsten occur in the divertor region of ITER and the effe...
We have performed microstructural characterization using transmission electron microscopy (TEM) tech...
\u3cp\u3eIn this work, the microstructure evolution in the near-surface of tungsten under hydrogen (...
Tungsten samples were heat-treated to achieve partial recrystallization and exposed to high ion flux...
The morphology changes induced by low energy deuterium ions on tungsten surfaces is studied for part...
The morphology changes induced by low energy deuterium ions on tungsten surfaces is studied for part...
Microstructure induced by plastic deformation at 600 °C in as-fabricated and recrystallized tungsten...
We have performed a combined study using transmission electron microscopy (TEM), nuclear reaction an...
We have performed a combined study using transmission electron microscopy (TEM), nuclear reaction an...
We have performed high flux plasma exposure of tungsten and subsequent microstructural characterizat...
Surface hardness of tungsten after high flux deuterium plasma exposure has been characterized by nan...
Intense hydrogen plasma interactions with tungsten occur in the divertor region of ITER and the effe...
We have performed microstructural characterization using transmission electron microscopy (TEM) tech...
\u3cp\u3eIn this work, the microstructure evolution in the near-surface of tungsten under hydrogen (...
Tungsten samples were heat-treated to achieve partial recrystallization and exposed to high ion flux...
The morphology changes induced by low energy deuterium ions on tungsten surfaces is studied for part...
The morphology changes induced by low energy deuterium ions on tungsten surfaces is studied for part...
Microstructure induced by plastic deformation at 600 °C in as-fabricated and recrystallized tungsten...