Microstructure and phase distribution of innovative Oxide Dispersion Strengthened (ODS) steel based on Fe-Cr-ZrO2 particularly for application at high temperature reactor with variation of Cr content was analysed. The alloy was synthesized with Cr composition variation of 15, 20 and 25 wt.% Cr, while zirconia dispersoid kept constant at 0.50 wt.%. The samples was synthesized by mechanical alloying comprising of high energy milling for 3 hours followed by vibrated compression with iso-static load at 20 ton. The final consolidation was performed via sintering process for 4 minutes using the Arc Plasma Sintering (APS) technique, a new method developed in BATAN especially for synthesizing high temperature materials. The samples were then chara...
The present work investigates the microstructural evolution of an oxide dispersion strengthened (ODS...
Two different zirconium contents (0.45 and 0.60 wt.%) have been incorporated into a Fe-14Cr-5Al-3W-0...
The present work investigates the microstructural evolution of an oxide dispersion strengthened (ODS...
Microstructure and phase distribution of innovative Oxide Dispersion Strengthened (ODS) steel based ...
Microstructure and phase distribution of innovative Oxide Dispersion Strengthened (ODS) steel based ...
Fe-Cr based oxide dispersion strengthened (ODS) alloys are potential candidates for usage as nuclear...
cited By 10International audienceFerritic ODS 14Cr steels are one of the options for future nuclear ...
In present study, Fe-22Cr-4.5Al oxide dispersion strengthened ferritic alloys were fabricated using ...
In this study, oxide dispersion strengthened (ODS) ferritic steels with nominal composition of Fe–14...
This article belongs to the Special Issue Spark Plasma Sintering of Metals and Metal Matrix Nanocomp...
Ferritic/martensitic high-chromium steels are leading candidates for fission and fusion reactor comp...
International audienceOxide dispersion strengthened (ODS) Fe alloys were produced by mechanical allo...
International audienceOxide Dispersion Strengthened (ODS) steels envisaged as cladding materials in ...
International audienceOxide Dispersion Strengthened (ODS) steels envisaged as cladding materials in ...
Oxide dispersion strengthened (ODS) alloys are potential candidates to be used as high temperature s...
The present work investigates the microstructural evolution of an oxide dispersion strengthened (ODS...
Two different zirconium contents (0.45 and 0.60 wt.%) have been incorporated into a Fe-14Cr-5Al-3W-0...
The present work investigates the microstructural evolution of an oxide dispersion strengthened (ODS...
Microstructure and phase distribution of innovative Oxide Dispersion Strengthened (ODS) steel based ...
Microstructure and phase distribution of innovative Oxide Dispersion Strengthened (ODS) steel based ...
Fe-Cr based oxide dispersion strengthened (ODS) alloys are potential candidates for usage as nuclear...
cited By 10International audienceFerritic ODS 14Cr steels are one of the options for future nuclear ...
In present study, Fe-22Cr-4.5Al oxide dispersion strengthened ferritic alloys were fabricated using ...
In this study, oxide dispersion strengthened (ODS) ferritic steels with nominal composition of Fe–14...
This article belongs to the Special Issue Spark Plasma Sintering of Metals and Metal Matrix Nanocomp...
Ferritic/martensitic high-chromium steels are leading candidates for fission and fusion reactor comp...
International audienceOxide dispersion strengthened (ODS) Fe alloys were produced by mechanical allo...
International audienceOxide Dispersion Strengthened (ODS) steels envisaged as cladding materials in ...
International audienceOxide Dispersion Strengthened (ODS) steels envisaged as cladding materials in ...
Oxide dispersion strengthened (ODS) alloys are potential candidates to be used as high temperature s...
The present work investigates the microstructural evolution of an oxide dispersion strengthened (ODS...
Two different zirconium contents (0.45 and 0.60 wt.%) have been incorporated into a Fe-14Cr-5Al-3W-0...
The present work investigates the microstructural evolution of an oxide dispersion strengthened (ODS...