Modern high-density oxide-based ceramics with a controlled microstructure. Part V. Chemical-resistant high-density yttria-, scandia-, and alumina-based ceramics

Modern high-density oxide-based ceramics with a controlled microstructure. Part V.... A YScO3-ceramics that is stable with respect to an alkali metal plasma and possesses increased strength and thermal stability, has been developed. The ceramics is obtained by hot pressing at 1450–1550°C. It was established that a 2% Al2O3 additive improves the sintering ability and reduces the size of crystallites. The Al2O3 additive has proved to be efficient only if introduced in the course of milling hydroxides in an aluminum chloride solution. http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.png Refractories and Industrial Ceramics Springer Journals

Modern high-density oxide-based ceramics with a controlled microstructure. Part V. Chemical-resistant high-density yttria-, scandia-, and alumina-based ceramics

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Publisher
Springer-Verlag
Copyright
Copyright © 1997 by Plenum Publishing Corporation
Subject
Chemistry; Characterization and Evaluation of Materials; Materials Science; Ceramics, Glass, Composites, Natural Methods
ISSN
1083-4877
eISSN
1573-9139
D.O.I.
10.1007/BF02767786
Publisher site
See Article on Publisher Site

Abstract

A YScO3-ceramics that is stable with respect to an alkali metal plasma and possesses increased strength and thermal stability, has been developed. The ceramics is obtained by hot pressing at 1450–1550°C. It was established that a 2% Al2O3 additive improves the sintering ability and reduces the size of crystallites. The Al2O3 additive has proved to be efficient only if introduced in the course of milling hydroxides in an aluminum chloride solution.

Journal

Refractories and Industrial CeramicsSpringer Journals

Published: Nov 26, 2007

References

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