Phase Formation in the ZrO2 – Nd2O3 (Y2O3) – Al2O3 (Cr2O3) SYSTEMS AND PROPERTIES OF MATERIALS BASED ON THEM

Phase Formation in the ZrO2 – Nd2O3 (Y2O3) – Al2O3 (Cr2O3) SYSTEMS AND PROPERTIES OF... The nature and degree of completeness of phase transformations that occur at 1100 – 1750°C in ZrO2 – Nd2O3 (Y2O3) – Al2O3 (Cr2O3) compositions rich with ZrO2 are studied. It is shown that the zirconium-yttrium cubic solid solution has a maximum resistance to the action of Al2O3 and Cr2O3. The sinterability and other properties of parts from ZrO2 can be controlled within a quite wide range by adding Al2O3, Cr2O3, and NdCrO3 to ZrO2 stabilized by Nd2O3. http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.png Refractories and Industrial Ceramics Springer Journals

Phase Formation in the ZrO2 – Nd2O3 (Y2O3) – Al2O3 (Cr2O3) SYSTEMS AND PROPERTIES OF MATERIALS BASED ON THEM

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Publisher
Springer Journals
Copyright
Copyright © 2001 by Plenum Publishing Corporation
Subject
Materials Science; Characterization and Evaluation of Materials; Materials Science, general; Ceramics, Glass, Composites, Natural Materials
ISSN
1083-4877
eISSN
1573-9139
D.O.I.
10.1023/A:1011305421311
Publisher site
See Article on Publisher Site

Abstract

The nature and degree of completeness of phase transformations that occur at 1100 – 1750°C in ZrO2 – Nd2O3 (Y2O3) – Al2O3 (Cr2O3) compositions rich with ZrO2 are studied. It is shown that the zirconium-yttrium cubic solid solution has a maximum resistance to the action of Al2O3 and Cr2O3. The sinterability and other properties of parts from ZrO2 can be controlled within a quite wide range by adding Al2O3, Cr2O3, and NdCrO3 to ZrO2 stabilized by Nd2O3.

Journal

Refractories and Industrial CeramicsSpringer Journals

Published: Oct 9, 2004

References

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