TY - JOUR
T1 - Tensile and Charpy impact properties of EUROFER97-3 and three RAFM steels after neutron irradiation at 330 ºC and 540 ºC to damage doses of 19-24 dpa
AU - Chakin, Vladimir
AU - Bonnekoh, C.
AU - Gaisin, Ramil
AU - Ziegler, Rainer
AU - Duerrschnabel, Michael
AU - Klimenkov, Michael
AU - Schneider, Hans-Christian
AU - Rolli, Rolf
AU - Gorr, Bronislava
AU - Terentyev, Dmitry
AU - Henry, Jean
AU - Nozawa, T.
N1 - Score=10
PY - 2026/8/16
Y1 - 2026/8/16
N2 - The reduced-activation ferritic–martensitic (RAFM) steels EUROFER97-3 subjected to two heat treatments
(EUROFER97-3_980/780 and EUROFER97-3_1100/700), F82H, as well the experimental heats M474, and L664B
were irradiated in the BOR-60 fast reactor at temperatures of 330 ◦C and 540 ◦C, with damage doses ranging
from 19.2 to 23.8 dpa. The results for all steels revealed a significant impact of irradiation temperature on tensile
properties. Irradiation at 330 ◦C led to strong hardening and a pronounced reduction in uniform elongation,
whereas irradiation at 540 ◦C resulted in practically no changes in tensile properties. In addition, a significant
decrease in the upper shelf energy (USE) and a large shift in the ductile–brittle transition temperature (DBTT)
was observed after irradiation of EUROFER97-3 with both heat treatments at 330 ◦C, while no significant
changes in Charpy impact properties after irradiation at 540 ◦C were detected. In essence, irradiation at 540 ◦C
caused only minor changes in the USE and DBTT of all studied RAFM steels compared with the unirradiated
condition
AB - The reduced-activation ferritic–martensitic (RAFM) steels EUROFER97-3 subjected to two heat treatments
(EUROFER97-3_980/780 and EUROFER97-3_1100/700), F82H, as well the experimental heats M474, and L664B
were irradiated in the BOR-60 fast reactor at temperatures of 330 ◦C and 540 ◦C, with damage doses ranging
from 19.2 to 23.8 dpa. The results for all steels revealed a significant impact of irradiation temperature on tensile
properties. Irradiation at 330 ◦C led to strong hardening and a pronounced reduction in uniform elongation,
whereas irradiation at 540 ◦C resulted in practically no changes in tensile properties. In addition, a significant
decrease in the upper shelf energy (USE) and a large shift in the ductile–brittle transition temperature (DBTT)
was observed after irradiation of EUROFER97-3 with both heat treatments at 330 ◦C, while no significant
changes in Charpy impact properties after irradiation at 540 ◦C were detected. In essence, irradiation at 540 ◦C
caused only minor changes in the USE and DBTT of all studied RAFM steels compared with the unirradiated
condition
KW - Radiation embrittlement
KW - RAFM steels
KW - Radiation hardening
KW - Upper shelf energy
KW - Ductile-brittle transition temperature
KW - Neutron irradiation
UR - https://ecm.sckcen.be/OTCS/llisapi.dll/open/101600494
U2 - 10.1016/j.jnucmat.2026.156998
DO - 10.1016/j.jnucmat.2026.156998
M3 - Article
SN - 0022-3115
VL - 633
JO - Journal of Nuclear Materials
JF - Journal of Nuclear Materials
M1 - 156998
ER -