articleTop 1% cited
High‐Strength Zirconium Diboride‐Based Ceramics
Journal of the American Ceramic Society · 2004 · Vol. 87(6) · pp. 1170–1172
Adam L. Chamberlain✉(Missouri University of Science and Technology)William G. Fahrenholtz(Missouri University of Science and Technology)Gregory E. Hilmas(American Ceramic Society)Donald T. Ellerby(American Ceramic Society)
Abstract
Zirconium diboride (ZrB 2 ) and ZrB 2 ceramics containing 10, 20, and 30 vol% SiC particulates were prepared from commercially available powders by hot pressing. Four‐point bend strength, fracture toughness, elastic modulus, and hardness were measured. Modulus and hardness did not vary significantly with SiC content. In contrast, strength and toughness increased as SiC content increased. Strength increased from 565 MPa for ZrB 2 to >1000 MPa for samples containing 20 or 30 vol% SiC. The increase in strength was attributed to a decrease in grain size and the presence of WC.
Advanced ceramic materials synthesisAdvanced materials and compositesMXene and MAX Phase MaterialsZirconium diborideMaterials scienceFracture toughnessCeramicComposite materialZirconiumElastic modulusToughnessFlexural strengthMetallurgy
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