Title of article
Effect of oxide dopants on densification, microstructure and mechanical properties of alumina-silicon carbide nanocomposite ceramics prepared by pressureless sintering
Author/Authors
Pillai، نويسنده , , Sunil Kumar C. and Baron، نويسنده , , Benoit and Pomeroy، نويسنده , , Michael J. and Hampshire، نويسنده , , Stuart، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2004
Pages
10
From page
3317
To page
3326
Abstract
The densification behaviour, microstructural development and mechanical properties of a 5 vol.% silicon carbide dispersed alumina nanocomposite were studied by incorporating six different oxide dopants (1 wt.%). It was found that MgO, Y2O3 and CeO2 enhanced the densification of the nanocomposite, which can be explained by a liquid phase assisted sintering process. The yttria-doped nanocomposite could be pressureless sintered at 1550 °C. Doping with MgO or CeO2 refines the grain size of the matrix alumina whereas yttria addition induces exaggerated grain growth. The Youngʹs modulus, hardness, fracture toughness and erosive wear resistance were evaluated. Doped nanocomposites exhibit slightly lower Youngʹs modulus and higher hardness values than that of the undoped nanocomposite. CeO2 doping improves hardness and fracture toughness slightly whereas the improvement in erosive wear resistance was 2.5 times higher than the other nanocomposites. Improvements in properties are explained in terms of residual compressive stresses, grain refinement and grain boundary strengthening.
Keywords
Al2O3 , Electron microscopy , Grain boundaries , mechanical properties , Sintering , Wear resistance
Journal title
Journal of the European Ceramic Society
Serial Year
2004
Journal title
Journal of the European Ceramic Society
Record number
1407339
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