Mechanical and helium swelling responses of K-RAFM steels to Fe ion irradiation and helium implantation

Authors
Kim, SangeunAhn, MinkyuPark, JinwooYu, GyeongsikKim, JinhyukJin, Hyung-HaLee, Chang-hoonYu, Byung-YongLim, Weon CheolShin, Chansun
Issue Date
2024-06
Publisher
Elsevier Limited
Citation
Nuclear Materials and Energy, v.39
Abstract
This study explores the effects of Fe ion irradiation and helium implantation on the mechanical and micro- structural behaviors of K-RAFM steels. Through micropillar compression tests, we observed irradiation hardening, which manifested as an increase in strength and a decrease in strain bursts in the irradiated specimens. This change in deformation behavior indicates the impact of radiation-induced defects on dislocation dynamics. Helium implantation resulted in the formation of surface steps and, as shown by nanoindentation mapping, led to a localized increase in hardness, highlighting the significant influence of helium on mechanical properties. Microstructural examination revealed the steel's tempered martensitic structure and pointed to the importance of M 23 C 6 and MX precipitates in modulating the effects of irradiation. Notably, K-RAFM steels showed a diminished extent of irradiation hardening, which can be attributed to the higher fraction of MX precipitates serving as effective trapping sites for point defects. Understanding how microstructural features influence mechanical performance in K-RAFM steels assists in steering the creation of materials tailored to improve radiation resistance in nuclear environments.
Keywords
ACTIVATION FERRITIC/MARTENSITIC STEEL; TWINNING-INDUCED PLASTICITY; FERRITIC-MARTENSITIC STEEL; RESEARCH-AND-DEVELOPMENT; MICROPILLAR COMPRESSION; BUBBLE FORMATION; MICROSTRUCTURE; DEFORMATION; STRENGTH; TENSILE; RAFM steels; Irradiation hardening; Helium swelling
ISSN
2352-1791
URI
https://pubs.kist.re.kr/handle/201004/150472
DOI
10.1016/j.nme.2024.101652
Appears in Collections:
KIST Article > 2024
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