Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7966286 | Journal of Nuclear Materials | 2015 | 9 Pages |
Abstract
Helium effects on EU-ODS EUROFER were studied by means of nanoindentation and TEM. The results were compared with those of EUROFER97. Both steels were implanted in a stair-like profile configuration using energies from 2Â MeV (maximum He content â¼750Â appm He) to 15Â MeV (minimum He â¼350Â appm He) at room temperature. The nanoindentation tests on He implanted samples showed a hardness increase that depended on the He concentration. The maximum hardness increase observed at 5Â mN was 21% in EU-ODS EUROFER and 41% in EUROFER97; it corresponded with the zone with the highest He concentration which was around 750Â appm, according to MARLOWE simulation. In addition, FIB lamellae were prepared from EUROFER97 and EU-ODS EUROFER containing the aforementioned zones with maximum (750Â appm) and minimum (300Â appm) He. TEM investigations carried out showed small and homogeneously distributed He nanobubbles on both alloys in the zone corresponding with maximum He content. These microstructural features seem to be the cause of the hardness increase measured by nanoindentation.
Related Topics
Physical Sciences and Engineering
Energy
Nuclear Energy and Engineering
Authors
M. Roldán, P. Fernández, J. Rams, D. Jiménez-Rey, E. Materna-Morris, M. Klimenkov,