AbstractTungsten is a prime material candidate for the first wall of a future fusion reactor. In the case of a loss-of-coolant accident (LOCA) wall temperatures of about 1450 K could be reached lasting about 30–60 days due to nuclear decay heat. In the worst case scenario combining LOCA with air ingress, the formation and release of highly volatile and radioactive tungsten trioxide (WO3) into the environment can occur. Smart self-passivating tungsten alloys preventing the formation of WO3 can be a way to mitigate this release.In this contribution we present the studies of a new yttrium-containing W-Cr-Y alloys. The extent up to which yttrium acts as an active element improving the adherence and stability of the protective Cr2O3 layer formed...
Tungsten is currently deemed as a promising plasma-facing material (PFM) for the future power plant ...
Tungsten (W) is deemed as the main candidate for the first wall armor material of future fusion powe...
The severe particle, radiation and neutron environment in a future fusion power plant requires the d...
AbstractTungsten is a prime material candidate for the first wall of a future fusion reactor. In the...
Tungsten is a prime material candidate for the first wall of a future fusion reactor. In the case of...
Tungsten (W) is currently deemed the main candidate for the plasma-facing armor material of the firs...
Electricity from nuclear fusion is a promising approach. An accidental scenario of a fusion power pl...
Tungsten (W) is a prime candidate as first wall armor material of future fusion power plants as W wi...
The use of self-passivating tungsten alloys for the first wall armor of future fusion reactors is ad...
Tungsten is considered the main candidate material for the first-wall in DEMO due to its high meltin...
Self-passivating tungsten based alloys for the first wall armour of future fusion reactors are expec...
During an accident with loss-of-coolant and air ingress in DEMO, the temperature of tungsten first w...
Tungsten (W) currently is the main candidate as plasma-facing armour material for the first wall of ...
This study is for: The Fifteenth International Conference on Fusion Reactor Materials (ICFRM-15) wa...
AbstractSelf-passivating tungsten based alloys for the first wall armour of future fusion reactors a...
Tungsten is currently deemed as a promising plasma-facing material (PFM) for the future power plant ...
Tungsten (W) is deemed as the main candidate for the first wall armor material of future fusion powe...
The severe particle, radiation and neutron environment in a future fusion power plant requires the d...
AbstractTungsten is a prime material candidate for the first wall of a future fusion reactor. In the...
Tungsten is a prime material candidate for the first wall of a future fusion reactor. In the case of...
Tungsten (W) is currently deemed the main candidate for the plasma-facing armor material of the firs...
Electricity from nuclear fusion is a promising approach. An accidental scenario of a fusion power pl...
Tungsten (W) is a prime candidate as first wall armor material of future fusion power plants as W wi...
The use of self-passivating tungsten alloys for the first wall armor of future fusion reactors is ad...
Tungsten is considered the main candidate material for the first-wall in DEMO due to its high meltin...
Self-passivating tungsten based alloys for the first wall armour of future fusion reactors are expec...
During an accident with loss-of-coolant and air ingress in DEMO, the temperature of tungsten first w...
Tungsten (W) currently is the main candidate as plasma-facing armour material for the first wall of ...
This study is for: The Fifteenth International Conference on Fusion Reactor Materials (ICFRM-15) wa...
AbstractSelf-passivating tungsten based alloys for the first wall armour of future fusion reactors a...
Tungsten is currently deemed as a promising plasma-facing material (PFM) for the future power plant ...
Tungsten (W) is deemed as the main candidate for the first wall armor material of future fusion powe...
The severe particle, radiation and neutron environment in a future fusion power plant requires the d...