April 2008

Journal

Embrittlernent of irradiated F82H in the absence of irradiation hardening

By:
Klueh, Ronald ; Shiba, Kiyoyuki ; Sokolov, Mikhail A
Journal Name:
Journal of Nuclear Materials
Page Number:
191-194
Volume:
386
Issue Number:
N/A
Publication Date:
April 1, 2008
View DOI Listing:
https://doi.org/10.1016/j.jnucmat.2007.08.006

Abstract

Neutron irradiation of 7-12% Cr ferritic/martensitic steels below 425-450�C produces microstructural defects and precipitation that cause an increase in yield stress. This irradiation hardening causes embrittlement, which is observed in a Charpy impact or fracture toughness test as an increase in the ductile-brittle transition temperature. Based on observations that show little change in strength in steels irradiated above 425-450�C, the general conclusion has been that no embrittlement occurs above these temperatures. In a recent study of F82H steel, significant embrittlement was observed after irradiation at 500�C. This embrittlement is apparently due to irradiation-accelerated Laves-phase precipitation. Observations of the embrittlement in the absence of hardening has been examined and analyzed with thermal-aging studies and computational thermodynamics calculations to illuminate and understand the effect.


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