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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

  • Vladimir Chakin
  • , C. Bonnekoh
  • , Ramil Gaisin
  • , Rainer Ziegler
  • , Michael Duerrschnabel
  • , Michael Klimenkov
  • , Hans-Christian Schneider
  • , Rolf Rolli
  • , Bronislava Gorr
  • , Dmitry Terentyev
  • , Jean Henry
  • , T. Nozawa

    Research outputpeer-review

    Abstract

    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
    Original languageEnglish
    Article number156998
    Number of pages12
    JournalJournal of Nuclear Materials
    Volume633
    DOIs
    StatePublished - 16 Aug 2026

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