The paper discusses our recent experiments focused on the chromium influence on the microstructural changes of iron based alloys under radiation treatment. Our experimental method ¿ the positron annihilation lifetime spectroscopy (PALS) enables an observation of size and density changes of the vacancy type defects in the material microstructure. These defects have been created by implantation of charged particles (He2+). The cascade collisions in the crystal lattice and following Frenkel pair creation have been considered as possible approximation of the neutron flux damage up to 100 dpa in the region up to 1 micrometer from the surface.JRC.F.4-Safety of future nuclear reactor
Positron annihilation lifetime measurements and angular correlation measurements have been performed...
International audienceThe concentration of chromium (Cr) plays an important role on the radiation in...
Reduced activation high-chromium ferritic/martensitic steels are candidate materials for Generation ...
Chromium is an element with significant effect on the elevated temperature corrosion resistance and ...
Positron annihilation spectroscopy (PAS) is a powerful, non-destructive technique used to characteri...
The first walls of future fusion reactors will be exposed to 14 MeV neutron irradiation. In order to...
Reduced activation ferritic/martensitic steels (RAFM) represented by binary Fe-Cr alloys, with diffe...
High chromium steels belong to the most prospective materials for reactor pressure vessel of High Te...
Oxide dispersion strengthened steels are candidate materials for nuclear reactor applications due to...
The degradation of reactor pressure vessel steels under irradiation, which results from the hardenin...
AbstractReduced activation ferritic/martensitic steels (RAFM) represented by binary Fe-Cr alloys, wi...
Positron annihilation lifetime measurements and angular correlation measurements have been performed...
International audienceThe concentration of chromium (Cr) plays an important role on the radiation in...
Reduced activation high-chromium ferritic/martensitic steels are candidate materials for Generation ...
Chromium is an element with significant effect on the elevated temperature corrosion resistance and ...
Positron annihilation spectroscopy (PAS) is a powerful, non-destructive technique used to characteri...
The first walls of future fusion reactors will be exposed to 14 MeV neutron irradiation. In order to...
Reduced activation ferritic/martensitic steels (RAFM) represented by binary Fe-Cr alloys, with diffe...
High chromium steels belong to the most prospective materials for reactor pressure vessel of High Te...
Oxide dispersion strengthened steels are candidate materials for nuclear reactor applications due to...
The degradation of reactor pressure vessel steels under irradiation, which results from the hardenin...
AbstractReduced activation ferritic/martensitic steels (RAFM) represented by binary Fe-Cr alloys, wi...
Positron annihilation lifetime measurements and angular correlation measurements have been performed...
International audienceThe concentration of chromium (Cr) plays an important role on the radiation in...
Reduced activation high-chromium ferritic/martensitic steels are candidate materials for Generation ...