Fracture of multilayer oxide composites

Ceramics with high strength and damage tolerance have been realized in the well-recognized non-oxide systems, e.g. silicon carbide/graphite and silicon carbide/boron nitride laminates. All-oxide systems without compliant materials functioning as do graphite and boron nitride are still facing the pro...

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Veröffentlicht in:Materials science & engineering. A, Structural materials : properties, microstructure and processing Structural materials : properties, microstructure and processing, 1998, Vol.241 (1), p.241-250
Hauptverfasser: Kuo, Dong-Hau, Kriven, Waltraud M
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Sprache:eng
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Zusammenfassung:Ceramics with high strength and damage tolerance have been realized in the well-recognized non-oxide systems, e.g. silicon carbide/graphite and silicon carbide/boron nitride laminates. All-oxide systems without compliant materials functioning as do graphite and boron nitride are still facing the problem of catastrophic failure. In this study, ten kinds of multilayered, all-oxide laminates fabricated by a low-cost tape casting technique were evaluated. These materials were yttrium phosphate (YPO 4)- and lanthanum phosphate (LaPO 4)-containing zirconia (ZrO 2) laminates, and aluminum phosphate (AlPO 4)-containing alumina (Al 2O 3) laminates. A YPO 4-containing ZrO 2 laminate demonstrated excellent strength and improved damage tolerance. A LaPO 4-containing ZrO 2 laminate also displayed a satisfactory result. An AlPO 4/Al 2O 3 laminate was weak. The AlPO 4/Al 2O 3 laminate was strengthened by reinforcing AlPO 4 layers with Al 2O 3, while retaining non-brittle fracture. Different flexural behaviors in different oxide laminates were discussed.
ISSN:0921-5093
1873-4936
DOI:10.1016/S0921-5093(97)00498-X