Self-passivating tungsten based alloys for the first wall armor of future fusion reactors are expected to provide an important safety advantage compare to pure tungsten in case of a loss-of-coolant accident with simultaneous air ingress, due to the formation of a stable protective scale at high temperatures in presence of oxygen preventing the formation of volatile and radioactive WO3. In this work, Zr is added to self-passivating W-10Cr-0.5Y alloy, manufactured by mechanical alloying and HIP, in view of improving its mechanical strength and thus, its thermal shock resistance. The as-HIPed W-10Cr-0.5Y-0.5Zr exhibits a nanocrystalline microstructure with the presence of an extremely fine nanoparticle dispersion. After heat treatment at...
Tungsten alloys currently represent prospective candidates to replace tungsten in the first wall app...
Self passivating tungsten-based alloys may provide a major safety advantage in comparison with pure ...
Tungsten is considered the main candidate material for the first-wall in DEMO due to its high meltin...
The use of self-passivating tungsten alloys for the first wall armor of future fusion reactors is ad...
Self-passivating tungsten based alloys for the first wall armour of future fusion reactors are expec...
AbstractSelf-passivating tungsten based alloys for the first wall armour of future fusion reactors a...
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) currently is the main candidate as plasma-facing armour material for the first wall of ...
Self-passivating tungsten based alloys will provide a major safety advantage compared to pure tungst...
Tungsten (W) is a prime candidate as first wall armor material of future fusion power plants as W wi...
W-Cr-Zr systems with different compositions were oxidized in a mixed gas (Ar + 20 vol.% O2) atmosphe...
Self-passivating tungsten-based alloys are an attractive material for application in future fusion r...
Tungsten alloys currently represent prospective candidates to replace tungsten in the first wall app...
Self passivating tungsten-based alloys may provide a major safety advantage in comparison with pure ...
Tungsten is considered the main candidate material for the first-wall in DEMO due to its high meltin...
The use of self-passivating tungsten alloys for the first wall armor of future fusion reactors is ad...
Self-passivating tungsten based alloys for the first wall armour of future fusion reactors are expec...
AbstractSelf-passivating tungsten based alloys for the first wall armour of future fusion reactors a...
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) currently is the main candidate as plasma-facing armour material for the first wall of ...
Self-passivating tungsten based alloys will provide a major safety advantage compared to pure tungst...
Tungsten (W) is a prime candidate as first wall armor material of future fusion power plants as W wi...
W-Cr-Zr systems with different compositions were oxidized in a mixed gas (Ar + 20 vol.% O2) atmosphe...
Self-passivating tungsten-based alloys are an attractive material for application in future fusion r...
Tungsten alloys currently represent prospective candidates to replace tungsten in the first wall app...
Self passivating tungsten-based alloys may provide a major safety advantage in comparison with pure ...
Tungsten is considered the main candidate material for the first-wall in DEMO due to its high meltin...