Nano-cluster stability following neutron irradiation in MA957 oxide dispersion strengthened material

ODS steels are promising materials for Sodium cooled Fast Reactors since their fine distribution of nano-clusters confers excellent mechanical properties. However, the nano-feature stability needs to be assessed under neutron irradiation. Before irradiation, the characterizations show that nano-part...

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Veröffentlicht in:Journal of nuclear materials 2014-01, Vol.444 (1-3), p.314-322
Hauptverfasser: Ribis, J., Lozano-Perez, S.
Format: Artikel
Sprache:eng
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Zusammenfassung:ODS steels are promising materials for Sodium cooled Fast Reactors since their fine distribution of nano-clusters confers excellent mechanical properties. However, the nano-feature stability needs to be assessed under neutron irradiation. Before irradiation, the characterizations show that nano-particles are finely distributed within the ferritic matrix and are identified to have a pyrochlore type structure. After irradiation of the MA957 alloy in the Phenix French reactor at 412°C up to 50dpa and 430°C up to 75dpa, transmission electron microscopy characterization reveals a very slight density fall but no distinguishable difference in nano-features size before and after irradiation. In addition, after both irradiations, the nano-oxides are still (Y, Ti, O) compounds with orientation relationship with the matrix. A multislice simulation of high resolution images suggests that nano-particles still have a fcc pyrochlore type structure after irradiation. A possible change of lattice parameter seems to be highlighted, possibly due to disordering by cascade effect.
ISSN:0022-3115
1873-4820
DOI:10.1016/j.jnucmat.2013.10.010