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Low‐Temperature Aging of Y‐TZP Ceramics

Journal of the American Ceramic Society · 1999 · Vol. 82(8) · pp. 2150–2154
Jérôme ChevalierBernard CalèsJean Michel Drouin

Abstract

The isothermal tetragonal‐to‐monoclinic transformation of a 3Y‐TZP ceramic is investigated from 70° to 130°C in water and in steam by X‐ray diffraction and optical interferometer techniques. Aging kinetics followed by X‐ray diffraction are fitted by the Mehl‐Avrami‐Johnson law, suggesting nucleation and growth to be the key mechanisms for transformation. Optical interferometer observations of highly polished samples effectively reveal a nucleation and growth micromechanism for tetragonal‐to‐monoclinic transformation. A model based on surface change analysis is developed that fits closely to the X‐ray diffraction results.

Advanced ceramic materials synthesisNuclear Materials and PropertiesAdvanced materials and compositesMonoclinic crystal systemTetragonal crystal systemNucleationDiffractionCeramicMaterials scienceIsothermal processCrystallographyX-ray crystallographyMineralogy
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References
Mechanics of Transformation‐Toughening in Brittle Materials
Journal of the American Ceramic Society · 1982 · 1,022 citations
Phase Analysis in Zirconia Systems
Journal of the American Ceramic Society · 1972 · 1,419 citations
Transformation toughening
Journal of Materials Science · 1982 · 648 citations
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