The combined effect of alumina and silica co-doping on the ageing resistance of 3Y-TZP bioceramics

被引:87
作者
Samodurova, Anastasia [1 ]
Kocjan, Andraz [1 ]
Swain, Michael V. [2 ]
Kosmac, Tomaz [1 ]
机构
[1] Jozef Stefan Inst, Dept Ceram Engn, SI-1000 Ljubljana, Slovenia
[2] Univ Sydney, Fac Dent, Biomat Lab, Sydney, NSW 2010, Australia
关键词
Zirconia; Bioceramics; Low-temperature degradation; Microcracking; FIB-SEM; LOW-TEMPERATURE DEGRADATION; TETRAGONAL ZIRCONIA POLYCRYSTALS; MONOCLINIC PHASE-TRANSFORMATION; HYDROTHERMAL DEGRADATION; DOPED ZIRCONIA;
D O I
10.1016/j.actbio.2014.09.009
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
The combined effect of alumina and silica co-doping on the ageing resistance of 3Y-TZP bioceramics was investigated. In order to differentiate between the distinct contributions of two dopants to the overall resistance to low-temperature degradation (LTD), specimens were prepared by infiltration of silica sol into pre-sintered 3Y-TZP pellets, produced from commercially available powders, which were alumina-free or contained 0.05 and 0.25 wt.%. After sintering, specimens were exposed to accelerated ageing in distilled water at 134 degrees C for 6-48 h. X-ray diffraction was applied to quantify the tetragonal-to-monoclinic (t-m) phase transformation associated with the LTD, while a focused ion beam-scanning electron microscopy technique was employed to study the microstructural features in the transformed layer. The results showed that the minor alumina and/or silica additions did not drastically change the densities, grain sizes or mechanical properties of 3Y-TZP, but they did significantly reduce LTD. The addition of either alumina or silica has the potential to influence both the nucleation and the propagation of moisture-induced transformation, but in different ways and to different extents. The co-doped ceramics exhibited predominantly transgranular fracture, reflecting strong grain boundaries (limiting microcracking of the transformed layer), for alumina doping, and rounded grains with a glassy phase at multiple grain junctions (reducing internal stresses) for silica-doped material. These two additives evidently have different dominant mechanisms associated with the deceleration of LTD of 3Y-TZP, but their combination increases resistance to ageing, importantly, without reducing the fracture toughness of this popular biomaterial. (C) 2014 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.
引用
收藏
页码:477 / 487
页数:11
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