Plasma-facing materials (PFMs) for nuclear fusion, either in inertial confinement fusion (ICF) or in magnetic confinement fusion (MCF) approaches, must withstand extremely hostile irradiation conditions. Mitigation strategies are plausible in some cases, but usually the best, or even the only, solution for feasible plant designs is to rely on PFMs able to tolerate these irradiation conditions. Unfortunately, many studies report a lack of appropriate materials that have a good thermomechanical response and are not prone to deterioration by means of irradiation damage. The most deleterious effects are vacancy clustering and the retention of light species, as is the case for tungsten. In an attempt to find new radiation-resistant materials, we...
Nanostructured tungsten has been proposed as a promising option for plasma facing materials in futur...
One of the challenges in fusion reactors is the discovery of plasma facing materials capable of with...
The work presented in this thesis focuses on the thermal and structural evolution of different mater...
One of the bottle necks for fusion to become a reality is the lack of materials able to withstand th...
Tungsten remains a leading candidate for plasma facing component (PFC) in future fusion devices. Thi...
Magnetic confinement fusion reactors aim to achieve clean, large-scale power production through sust...
Tungsten will be a key material for the plasma-facing components in future fusion devices. Its mecha...
The accumulation of defects, and in particular He bubbles, can have significant implications for the...
Due to increasing energy demand and environmental concerns, developing cleaner and more efficient me...
Materials exposed to plasmas in magnetic confinement nuclear reactors will accumulate radiation-indu...
Tungsten (W) is a candidate material for plasma facing materials (PFMs), which is expected to suffer...
Tungsten has been chosen as the plasma-facing wall material in fusion reactors, due to its high dens...
Currently nuclear fusion remains a major target for future energy production. However, numerous key ...
The tungsten components in nuclear fusion reactors need to withstand the radiation cascade damage ca...
The plasma-facing materials in fusion reactors will face very extreme servicing condition such as hi...
Nanostructured tungsten has been proposed as a promising option for plasma facing materials in futur...
One of the challenges in fusion reactors is the discovery of plasma facing materials capable of with...
The work presented in this thesis focuses on the thermal and structural evolution of different mater...
One of the bottle necks for fusion to become a reality is the lack of materials able to withstand th...
Tungsten remains a leading candidate for plasma facing component (PFC) in future fusion devices. Thi...
Magnetic confinement fusion reactors aim to achieve clean, large-scale power production through sust...
Tungsten will be a key material for the plasma-facing components in future fusion devices. Its mecha...
The accumulation of defects, and in particular He bubbles, can have significant implications for the...
Due to increasing energy demand and environmental concerns, developing cleaner and more efficient me...
Materials exposed to plasmas in magnetic confinement nuclear reactors will accumulate radiation-indu...
Tungsten (W) is a candidate material for plasma facing materials (PFMs), which is expected to suffer...
Tungsten has been chosen as the plasma-facing wall material in fusion reactors, due to its high dens...
Currently nuclear fusion remains a major target for future energy production. However, numerous key ...
The tungsten components in nuclear fusion reactors need to withstand the radiation cascade damage ca...
The plasma-facing materials in fusion reactors will face very extreme servicing condition such as hi...
Nanostructured tungsten has been proposed as a promising option for plasma facing materials in futur...
One of the challenges in fusion reactors is the discovery of plasma facing materials capable of with...
The work presented in this thesis focuses on the thermal and structural evolution of different mater...