Article ID Journal Published Year Pages File Type
1447420 Acta Materialia 2011 10 Pages PDF
Abstract

Transmission electron microscopy and atom-probe tomography were used to characterize on a near-atomic scale the microstructure and oxide and carbide phases that form during thermo-mechanical treatments of a model oxide dispersion strengthened Fe–12 wt.% Cr–0.4 wt.% Y2O3 alloy. It was found that some of the Y-rich nanoparticles retained their initial crystallographic structure but developed a Cr-enriched shell, while others evolved into ternary oxide phases during the initial processing. The Y- and Cr-rich oxide phases formed remained stable after annealing at 1023 K for 96 h. However, the number of Cr-rich carbides appeared to increase, inducing Cr depletion in the matrix.

Related Topics
Physical Sciences and Engineering Materials Science Ceramics and Composites
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