Fabrication of structure-controlled hydroxyapatite/zirconia composite

2006 
Abstract The structure-controlled hydroxyapatite/zirconia (HAp/ZrO 2 ) composites were fabricated. At first, cylindrical hydroxyapatite (HAp) samples were prepared by the extrusion process, and then the extruded HAp cylindrical samples were coated with 3 mol% of Y 2 O 3 partially stabilized ZrO 2 slurry, dried and aligned unidirectionally to form a composite bulk. The volume fraction of ZrO 2 in the HAp/ZrO 2 composite was estimated to be about 23 vol%. Bulk density and bending strength of the composites increased with sintering temperature. Fracture energy of HAp/ZrO 2 composite sintered at 1350 °C was approximately 1.6 times higher than that of monolithic HAp. Although the bending strength of HAp/ZrO 2 composite prepared in this study was relatively low, it exhibited high fracture energy than HAp monolithic and a non-brittle fracture behavior was obtained without using fiber as the reinforcement.
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