The Structural changes of Y2O3 in ferritic ODS alloys during milling


The Structural changes of Y2O3 in ferritic ODS alloys during milling

Hilger, I.; Tegel, M.; Gorley, M. J.; Grant, P. S.; Weißgärber, T.; Kieback, B.

Abstract

Oxide dispersion strengthened (ODS) ferritic steels are usually fabricated via mechanical alloying and subsequent consolidation via hot extrusion or hot isostatic pressing. During the individual process steps, a complex evolution of the nanoparticle structure is taking place. Powders with different Y2O3 contents were milled and examined by means of X-ray diffraction (XRD) and atom probe tomography (APT). It has been observed that the Y2O3 is fragmented and becomes partially X-ray amorphous upon milling. This effect is due to the grain refinement of Y2O3 during the milling process and not because of its dissociation in the steel matrix.

Keywords: X-ray diffraction; XRD; ODS; ferritic steels; GenIV; dissolution; Y2O3; Atom Probe tomography; amorphous; mechanical alloying; milling

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