One of the most important factors in deciding about the applicability of materials in the structural components of ITER, is the effect of neutron irradiation on the fracture toughness behaviour of these materials. In the present work, the fracture toughness properties of two candidate materials for the first wall and divertor components of ITER, namely precipitation hardened CuCrZr and dispersion hardened CuAl25 alloys, have been studied in the unirradiated and irradiated conditions. In parallel, tensile properties of these alloys have been also investigated in the unirradiated and irradiated conditions
The precipitate microstructure of prime aged CuCrZr was coarsened by overaging to see if the larger ...
The precipitate microstructure of prime aged CuCrZr was coarsened by overaging to see if the larger ...
Disk compact specimens of candidate materials for first wall/blanket structures in ITER have been ir...
The precipitation hardened copper alloy CuCrZr is one of the candidate materials for the first wall ...
High strength, high conductivity copper alloys are prime candidates for high heat flux applications ...
The effect of neutron irradiation on the fracture toughness of two commercially pure tungsten materi...
Tensile and fracture behaviour of two copper alloys i.e. CuAl25 IG0 and CuCrZr and their joints with...
Tensile and fracture behaviour of two copper alloys i.e. CuAl25 IG0 and CuCrZr and their joints with...
IN ORDER TO SIMULATE THE EFFECTS OF 14 MEV NEUTRON DAMAGE IN MATERIALS TO BE USED IN THE DI...
Zone refined marz grade copper and several oxide and spinodally strengthened copper alloys were neut...
Zone refined marz grade copper and several oxide and spinodally strengthened copper alloys were neut...
The electrical resistivity and tensile properties of copper and oxide dispersion strengthened (DS) c...
The present design of the ITER plasma facing components consists of a copper alloy heat sink layer b...
The present design of the ITER plasma facing components consists of a copper alloy heat sink layer b...
Fracture toughness was found to decrease rapidly with increasing temperature in dispersionstrengthen...
The precipitate microstructure of prime aged CuCrZr was coarsened by overaging to see if the larger ...
The precipitate microstructure of prime aged CuCrZr was coarsened by overaging to see if the larger ...
Disk compact specimens of candidate materials for first wall/blanket structures in ITER have been ir...
The precipitation hardened copper alloy CuCrZr is one of the candidate materials for the first wall ...
High strength, high conductivity copper alloys are prime candidates for high heat flux applications ...
The effect of neutron irradiation on the fracture toughness of two commercially pure tungsten materi...
Tensile and fracture behaviour of two copper alloys i.e. CuAl25 IG0 and CuCrZr and their joints with...
Tensile and fracture behaviour of two copper alloys i.e. CuAl25 IG0 and CuCrZr and their joints with...
IN ORDER TO SIMULATE THE EFFECTS OF 14 MEV NEUTRON DAMAGE IN MATERIALS TO BE USED IN THE DI...
Zone refined marz grade copper and several oxide and spinodally strengthened copper alloys were neut...
Zone refined marz grade copper and several oxide and spinodally strengthened copper alloys were neut...
The electrical resistivity and tensile properties of copper and oxide dispersion strengthened (DS) c...
The present design of the ITER plasma facing components consists of a copper alloy heat sink layer b...
The present design of the ITER plasma facing components consists of a copper alloy heat sink layer b...
Fracture toughness was found to decrease rapidly with increasing temperature in dispersionstrengthen...
The precipitate microstructure of prime aged CuCrZr was coarsened by overaging to see if the larger ...
The precipitate microstructure of prime aged CuCrZr was coarsened by overaging to see if the larger ...
Disk compact specimens of candidate materials for first wall/blanket structures in ITER have been ir...