Response of 9Cr-ODS steel to proton irradiation at 400°C

The stability of Y–Ti–O nanoclusters, dislocation structure, and grain boundary segregation in 9Cr-ODS steels has been investigated following proton irradiation at 400°C with damage levels up to 3.7dpa. A slight coarsening and a decrease in number density of nanoclusters were observed as a result of...

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Veröffentlicht in:Journal of nuclear materials 2014-09, Vol.452 (1-3), p.87-94
Hauptverfasser: He, Jianchao, Wan, Farong, Sridharan, Kumar, Allen, Todd R., Certain, A., Wu, Y.Q.
Format: Artikel
Sprache:eng
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Zusammenfassung:The stability of Y–Ti–O nanoclusters, dislocation structure, and grain boundary segregation in 9Cr-ODS steels has been investigated following proton irradiation at 400°C with damage levels up to 3.7dpa. A slight coarsening and a decrease in number density of nanoclusters were observed as a result of irradiation. The composition of nanoclusters was also observed to change with a slight increase of Y and Cr concentration in the nanoclusters following irradiation. Size, density, and composition of the nanoclusters were investigated as a function of nanocluster size, specifically classified to three groups. In addition to the changes in nanoclusters, dislocation loops were observed after irradiation. Finally, radiation-induced enrichment of Cr and depletion of W were observed at grain boundaries after irradiation.
ISSN:0022-3115
1873-4820
DOI:10.1016/j.jnucmat.2014.05.004