Oxide dispersion strengthening of ferritic/martensitic chromium steels is a promising route for the extension of the range of operation temperatures for nuclear applications. The investigation of dedicated model alloys is an important means in order to separate individual effects contributing to the mechanical behaviour under irradiation and to improve mechanistic understanding. A powder metallurgy route based on spark plasma sintering was applied to fabricate oxide dispersion strengthened (ODS) Fe9Cr model materials. These materials along with Eurofer97 and ODS-Eurofer were investigated by means of small-angle neutron scattering (SANS) and TEM. For Fe9Cr-0.6 wt.%Y 2O3, TEM results indicate a peak radius of the size distribution of Y2O3 par...
Oxide dispersion strengthened steels are candidate materials for structural constituents in IV gener...
Oxide dispersion strengthened steels are candidate materials for structural constituents in IV gener...
This study concerns four high performance structural alloys designed to withstand the extreme temper...
Ferritic/martensitic high-chromium steels are leading candidates for fission and fusion reactor comp...
Advanced fission and fusion power offer long-term energy production from fundamentally carbon-free f...
Fe-Cr based oxide dispersion strengthened (ODS) alloys are potential candidates for usage as nuclear...
Advanced fission and fusion power offer long-term energy production from fundamentally carbon-free f...
Spark plasma sintering (SPS) is an advanced consolidation technique, which particularly allows coars...
cited By 10International audienceFerritic ODS 14Cr steels are one of the options for future nuclear ...
This paper presents the results on the physical metallurgy studies in 9Cr Oxide Dispersion Strengthe...
Oxide dispersion strengthened steels based on the ferritic/martensitic steel EUROFER97 are promising...
In the present paper the small-angle neutron scattering (SANS) technique was used to investigate the...
Reduced-activation ferritic steels are considered as the primary candidate materials for structural ...
Oxide dispersion strengthened steels based on the ferritic/martensitic steel EUROFER97 are promising...
Oxide dispersion strengthened steels are candidate materials for structural constituents in IV gener...
Oxide dispersion strengthened steels are candidate materials for structural constituents in IV gener...
Oxide dispersion strengthened steels are candidate materials for structural constituents in IV gener...
This study concerns four high performance structural alloys designed to withstand the extreme temper...
Ferritic/martensitic high-chromium steels are leading candidates for fission and fusion reactor comp...
Advanced fission and fusion power offer long-term energy production from fundamentally carbon-free f...
Fe-Cr based oxide dispersion strengthened (ODS) alloys are potential candidates for usage as nuclear...
Advanced fission and fusion power offer long-term energy production from fundamentally carbon-free f...
Spark plasma sintering (SPS) is an advanced consolidation technique, which particularly allows coars...
cited By 10International audienceFerritic ODS 14Cr steels are one of the options for future nuclear ...
This paper presents the results on the physical metallurgy studies in 9Cr Oxide Dispersion Strengthe...
Oxide dispersion strengthened steels based on the ferritic/martensitic steel EUROFER97 are promising...
In the present paper the small-angle neutron scattering (SANS) technique was used to investigate the...
Reduced-activation ferritic steels are considered as the primary candidate materials for structural ...
Oxide dispersion strengthened steels based on the ferritic/martensitic steel EUROFER97 are promising...
Oxide dispersion strengthened steels are candidate materials for structural constituents in IV gener...
Oxide dispersion strengthened steels are candidate materials for structural constituents in IV gener...
Oxide dispersion strengthened steels are candidate materials for structural constituents in IV gener...
This study concerns four high performance structural alloys designed to withstand the extreme temper...