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Effect of Y-TZP addition on the microstructure and properties of titania-based composites

机译:Y-TZP的添加对二氧化钛基复合材料组织和性能的影响

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To maintain the bioactivity and to improve the mechanical properties of titania, both pure titania ceramics and titania-yttria-stabilized tetragonal zirconia (Y-TZP) composites with 5, 10, and 15 vol.percent Y-TZP were prepared via a sol-gel precipitation method. A titania precursor (titanium butoxide) was mixed with a submicron-sized Y-TZP powder, followed by hydrolysis-condensation reactions, green compact forming, and sintering in air at 1200-1350 deg. It was found that the addition of Y-TZP resulted in reduced rutile titania grain size from 13 to 3 mum. The Y-TZP tetragonal phase also resulted in improved mechanical properties of the titania-Y-TZP composites. For instance, the titania-15 vol. percent Y-TZP composite had a hardness value of 983 kg/mm~2, a bending strength of 160 MPa, and a fracture toughness of 3.79 MPa m~0.5. While the addition of Y-TZP increased the mechanical properties, it also decreased the bioactivity of the composites.
机译:为了保持生物活性并改善二氧化钛的机械性能,纯二氧化钛陶瓷和Y-TZP含量分别为5、10和15%的二氧化钛-氧化钇稳定的四方氧化锆(Y-TZP)复合材料均通过溶胶-溶胶法制备。凝胶沉淀法。将二氧化钛前体(丁氧化钛)与亚微米尺寸的Y-TZP粉末混合,然后进行水解-缩合反应,形成生坯,并在1200至1350度的空气中烧结。已经发现,添加Y-TZP导致金红石型二氧化钛晶粒尺寸从13μm减小至3μm。 Y-TZP四方相还改善了二氧化钛-Y-TZP复合材料的机械性能。例如,二氧化钛15卷。百分含量的Y-TZP复合材料具有983kg / mm 2的硬度值,160MPa的弯曲强度和3.79MPa m〜0.5的断裂韧性。 Y-TZP的添加虽然提高了机械性能,但同时也降低了复合材料的生物活性。

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