A pure coprecipitated 3 mol% Y-TZP powder was subjected to two calcination temperatures, 600° and 1000°C, prior to compaction and sintering. Significant differences in the initial sintering behavior were observed. The lower temperature calcined powder exhibited abnormal grain growth. The resultant mechanical properties mirrored the microstructure with the lower temperature calcined material having lower flexural strength. Hardness measurements of the two sintered bodies revealed significant differences in the two phases of the lower temperature calcined material. Differences in reactivity of the two powders after calcination are suggested as the basis for the difference in microstructure and resultant mechanical properties.
Influence of the calcination temperature on the microstructure and mechanical properties of a gel-derived and sintered 3mol% Y-TZP material / Montanaro, Laura; Ferroni, L.; Pagliolico, SIMONETTA LUCIA; Swain, M. V.; Bell, T.. - In: JOURNAL OF THE AMERICAN CERAMIC SOCIETY. - ISSN 0002-7820. - 79:4(1996), pp. 1034-1040. [10.1111/j.1151-2916.1996.tb08544.x]
Influence of the calcination temperature on the microstructure and mechanical properties of a gel-derived and sintered 3mol% Y-TZP material
MONTANARO, Laura;PAGLIOLICO, SIMONETTA LUCIA;
1996
Abstract
A pure coprecipitated 3 mol% Y-TZP powder was subjected to two calcination temperatures, 600° and 1000°C, prior to compaction and sintering. Significant differences in the initial sintering behavior were observed. The lower temperature calcined powder exhibited abnormal grain growth. The resultant mechanical properties mirrored the microstructure with the lower temperature calcined material having lower flexural strength. Hardness measurements of the two sintered bodies revealed significant differences in the two phases of the lower temperature calcined material. Differences in reactivity of the two powders after calcination are suggested as the basis for the difference in microstructure and resultant mechanical properties.Pubblicazioni consigliate
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https://hdl.handle.net/11583/1402743
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