Oxides dispersion strengthened (ODS) ferritic steel was prepared by using gas-atomized pre-alloyed powder, without the conventional mechanical alloying process. By adjusting the volume content of O2 in the gas atmosphere Ar, the O level in the ferritic powder can be well controlled. The O dissolves uniformly in the ferritic powder, and a very thin layer of oxides forms on the powder surface. After hot deformation, the primary particle boundaries, which retain after sintering, can be disintegrated and near fully dense materials can be obtained. The oxide layer on the powder surface has a significant effect on the microstructural evolution. It may prevent the diffusion in between the primary particles during sintering, and may dissolve and/or...
Oxide dispersion strengthened steel can be manufactured without mechanical alloying by gas atomizati...
Oxide dispersion strengthened steels are candidate materials for structural constituents in IV gener...
International audienceOxide Dispersion Strengthened (ODS) steels are candidates for nuclear applicat...
Pre-alloyed ferritic powders were milled for 10 h in the air atmosphere to introduce O atoms into th...
Oxide dispersion strengthened steels are candidate materials for structural constituents in IV gener...
This work concerns developing understanding of powder processing of oxide dispersion strengthened (O...
An innovative gas atomization reaction synthesis technique was employed as a viable method to dramat...
Oxide Dispersion Strengthened Ferritic Stainless Steels (ODS FS) are candidate materials for structu...
Gas atomization reaction synthesis (GARS) was employed as a simplified method for producing precurso...
The growth of oxide particles in FeCrAl-oxide dispersion strengthened steel (ODSS) considering an ac...
High-Cr oxide dispersion strengthened (ODS) ferritic steel powders with the nominal composition of F...
International audienceOxide dispersion strengthened (ODS) ferritic steels are promising candidates f...
The present work investigates the microstructural evolution of an oxide dispersion strengthened (ODS...
Oxide-dispersion-strengthened (ODS) ferritic steels of Fe-9Cr-0.3Y 2O3 and Fe-9Cr-0.2Ti-0.3Y2O3 (in ...
Oxide dispersion strengthened steel was manufactured utilizing gas atomization processing from alloy...
Oxide dispersion strengthened steel can be manufactured without mechanical alloying by gas atomizati...
Oxide dispersion strengthened steels are candidate materials for structural constituents in IV gener...
International audienceOxide Dispersion Strengthened (ODS) steels are candidates for nuclear applicat...
Pre-alloyed ferritic powders were milled for 10 h in the air atmosphere to introduce O atoms into th...
Oxide dispersion strengthened steels are candidate materials for structural constituents in IV gener...
This work concerns developing understanding of powder processing of oxide dispersion strengthened (O...
An innovative gas atomization reaction synthesis technique was employed as a viable method to dramat...
Oxide Dispersion Strengthened Ferritic Stainless Steels (ODS FS) are candidate materials for structu...
Gas atomization reaction synthesis (GARS) was employed as a simplified method for producing precurso...
The growth of oxide particles in FeCrAl-oxide dispersion strengthened steel (ODSS) considering an ac...
High-Cr oxide dispersion strengthened (ODS) ferritic steel powders with the nominal composition of F...
International audienceOxide dispersion strengthened (ODS) ferritic steels are promising candidates f...
The present work investigates the microstructural evolution of an oxide dispersion strengthened (ODS...
Oxide-dispersion-strengthened (ODS) ferritic steels of Fe-9Cr-0.3Y 2O3 and Fe-9Cr-0.2Ti-0.3Y2O3 (in ...
Oxide dispersion strengthened steel was manufactured utilizing gas atomization processing from alloy...
Oxide dispersion strengthened steel can be manufactured without mechanical alloying by gas atomizati...
Oxide dispersion strengthened steels are candidate materials for structural constituents in IV gener...
International audienceOxide Dispersion Strengthened (ODS) steels are candidates for nuclear applicat...