Void formation in 10Cr-2Mo ferritic steel irradiated in HFIR
Identifieur interne : 003598 ( Main/Exploration ); précédent : 003597; suivant : 003599Void formation in 10Cr-2Mo ferritic steel irradiated in HFIR
Auteurs : Masakazu Suzuki (mathématicien) [Japon] ; A. Hishinuma [Japon] ; P. J. Maziasz [États-Unis] ; T. Sawai [Japon]Source :
- Journal of Nuclear Materials [ 0022-3115 ] ; 1989.
Abstract
Microstructural evolution of a 10Cr-2Mo ferritic steel was investigated after irradiation in the High Flux Isotope Reactor (HFIR) at 500°C and doses up to 57 dpa. About 300 appm of helium was also produced after 57 dpa because the steel contained 1 wt% Ni. Many tiny helium bubbles were observed in a specimen irradiated to 34 dpa, either inside of or adjacent to particles of radiation-produced x- and Laves-phase precipitates. By contrast, after 57 dpa many of the tiny bubbles had developed into larger voids. Most of the voids were associated with radiation-induced x-phase particles.
Url:
DOI: 10.1016/0022-3115(90)90298-2
Affiliations:
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<front><div type="abstract" xml:lang="en">Microstructural evolution of a 10Cr-2Mo ferritic steel was investigated after irradiation in the High Flux Isotope Reactor (HFIR) at 500°C and doses up to 57 dpa. About 300 appm of helium was also produced after 57 dpa because the steel contained 1 wt% Ni. Many tiny helium bubbles were observed in a specimen irradiated to 34 dpa, either inside of or adjacent to particles of radiation-produced x- and Laves-phase precipitates. By contrast, after 57 dpa many of the tiny bubbles had developed into larger voids. Most of the voids were associated with radiation-induced x-phase particles.</div>
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