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Phase Equilibria and Ionic Conductivity in the System ZrO2−Yb2O3−Y2O3
Authors:G S CORMAN  V S STUBICAN
Affiliation:Department of Materials Science and Engineering, The Pennsylvania State University, University Park, Pennsylvania 16802
Abstract:The phase equilibria in the zirconia-rich part of the system ZrO2?Yb2O3?Y2O3 were determined at 1200°, 1400°, and 1650°C. The stabilizing effects of Yb2O3 and Y2O3 were found to be quite similar with <10 mol% of either being necessary to fully stabilize the cubic fluorite-structure phase at 1200°C. The two binary ordered phases, Zr3Yb4O12 and Zr3Y4O12, are completely miscible at 1200°C. These were the only binary or ternary phases detected. The ionic conductivities of ternary specimens in this system were measured using the complex impedance analysis technique. For a given level of total dopant, the substitution of Yb2O3 for Y2O3 gives only minor increases in specimen conductivity.
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