The influence of the metal phase of novel Al2O3/TiO2/TiAl2O5 composites obtained via a slip casting method

This study aims to analyze the ceramic-metal composite Al2O3/TiO2/TiAl2O5 obtained using the slip-casting method. Samples containing 50% vol. of the solid phase and 2% vol. and 4% vol. fractions of the metallic phase were examined. Rheological investigations were performed. Measurements of shrinkage...

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Veröffentlicht in:Bulletin of the Polish Academy of Sciences. Technical sciences 2025-01, Vol.73 (1), p.152213-152213
Hauptverfasser: Wachowski, Marcin, Zygmuntowicz, Justyna, Kosturek, Robert, Śnieżek, L., Piotrkiewicz, P., Żurowski, Radosław, Korycka, Karolina
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Sprache:eng ; pol
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Zusammenfassung:This study aims to analyze the ceramic-metal composite Al2O3/TiO2/TiAl2O5 obtained using the slip-casting method. Samples containing 50% vol. of the solid phase and 2% vol. and 4% vol. fractions of the metallic phase were examined. Rheological investigations were performed. Measurements of shrinkage and density of the composites produced were determined. The phase composition of the obtained composite was investigated using SEM/EDS and XRD techniques. Stereological analysis was performed as well. The slip-casting method enables the production of the proposed composite, reinforced by the presence of TiO2 and TiAl2O5. With the increase in the content of the metallic phase in the composite, the thialite phase content increases, but the relative density and volumetric shrinkage of the obtained composites decrease. Thialite grains are characterized by a size in the range of 4 µm to 15 µm, which leads to a low density of the samples. The results revealed that no significant effect of changing the metal phase content of the slurries used for fabricated composites was observed on the limiting grain growth of alumina during the sintering process of slip-casting composites. This finding is important as it suggests that the increase in metallic phase content does not lead to undesirable grain coarsening, which could degrade mechanical properties.
ISSN:2300-1917
0239-7528
2300-1917
DOI:10.24425/bpasts.2024.152213