Published 2016 | Version v1
Journal article

Effect of Irradiation Mode on Irradiated Microstructure of HT9

  • 1. University of Michigan: 2355 Bonisteel Boulevard, Ann Arbor, MI, 48109 (United States)

Description

Core components in Generation IV fast reactors are expected to be exposed to very high damage levels of 200 displacements per atom (dpa) and above. Numerous issues with in-reactor irradiations including residual radioactivity, expense, length of irradiation and availability have led to increased interest in ion irradiation as a surrogate. Self-ion irradiations can produce damage rates of around 10-3 dpa/s with well-controlled temperature, doses and dose rates, allowing for accelerated irradiation testing. Along with these benefits, ion irradiations have been shown to reproduce many of the same irradiation-induced features as in reactor irradiations. Of particular interest at high doses is formation of voids, precipitates and evolution of the dislocation microstructure. However, the beam mode under ion irradiation must be addressed. Raster scanning has been shown to produce microstructural features similar to those observed in-reactor irradiations, however, since they are a pulsed type irradiation, they may induce artifacts as a result of annealing between pulses. Defocused beams have the benefit of full coverage 100% of the time, but may be challenging in terms of ensuring even irradiation over a large area as well as in reaching high enough currents to maintain acceptable damage rates to be useful as a surrogate. This paper reports upon the comparison of behavior of ferritic martensitic steels under a raster scanned or defocused beam mode. The objective is to determine the effect of beam condition the irradiated microstructural; specifically, on the formation of voids, precipitates and dislocation loops and analyze these results within the context of the FDRT model. (authors)

Additional details

Publishing Information

Journal Title
Transactions of the American Nuclear Society
Journal Volume
115
Journal Page Range
p. 173-176
ISSN
0003-018X

Conference

Title
2016 ANS Winter Meeting and Nuclear Technology Expo
Dates
6-10 Nov 2016
Place
Las Vegas, NV (United States)

Optional Information

Notes
12 refs.; available from American Nuclear Society - ANS, 555 North Kensington Avenue, La Grange Park, IL 60526 (US)