微波烧结技术制备的10Ce-TZP/Al2O3生物陶瓷的低温降解性能

L. Gil-Flores, M. Salvador, F. Peñaranda-Foix, R. Rosa, P. Veronesi, C. Leonelli, A. Borrell
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引用次数: 0

摘要

氧化锆是最常用的陶瓷之一,特别是在生物医学应用中,由于其特殊的机械性能。然而,众所周知,由于低温降解(LTD),其性能会降低。这种现象包括在一定条件下从四方到单斜的自发相变,当样品暴露在20-300ºC的高湿度温度范围内时,这一过程会加速。除了单斜相的力学性能比四方相差外,相间存在4%的体积变化,导致材料出现微裂纹等缺陷。由于这个原因,1999年至2011年间,氧化锆假体在人体内灾难性地失败了。先前的研究表明,Al2O3的加入抑制了相变的传播2。因此,本研究的目的是研究在2.45 GHz和5.8 GHz两种不同频率的微波下烧结的氧化锆掺杂氧化铈和氧化铝增韧复合材料(10Ce-TZP/Al2O3)的水热时效。微波加热技术是基于材料对电磁辐射的吸收,使样品被加热。目前,大多数微波加热设备使用2.45 GHz;因此,本研究的新颖之处在于采用5.8 GHz的频率并研究其对LTD的影响。LTD在120ºC和1.2 bar的蒸汽高压灭菌器中进行,因为这些条件加速了水热老化过程3。为了对降解样品进行表征,采用了微拉曼光谱、原子力显微镜、纳米压痕技术和电子显微镜。参考文献1 .          诺顿,m.r, Yarlagadda, R.,安德森,g.h.j.骨关节外科杂志。中文信息学报,2002,84-b, 631-635。2 .          Fabbri, P., Piconi, C., Burresi, E., Magnani, G., Mazzanti, F., Mingazzini, C. Dent。板牙。, 2014年。3 .          Presenda,。,萨尔瓦多,医学博士,莫雷诺,R.,博雷尔,a.j. Am。陶瓷。Soc。中文信息学报,2015,98,3680-3689。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
LOW TEMPERATURE DEGRADATION BEHAVIOUR OF 10Ce-TZP/Al2O3 BIOCERAMICS OBTAINED BY MICROWAVE SINTERING TECHNOLOGY
Zirconia is one of the most used ceramics, especially for biomedical applications, due to its exceptional mechanical properties. However, it is commonly known that its properties can be diminished owing to a low temperature degradation (LTD). This phenomenon consists on a spontaneous phase transformation, from tetragonal to monoclinic, under certain conditions, which is accelerated when the samples are exposed under high levels of humidity at a temperature range between 20-300 ºC. In addition to the fact that the monoclinic phase presents worse mechanical properties than the tetragonal one, there is a volume change of 4% between phases that gives rise to defects in the material as microcracks. Due to this reason, zirconia prostheses failed catastrophically inside the human body between 1999 and 20011. Previous researches reveal that Al2O3 addition suppress the propagation of phase transformation2. Thus, the aim of the present work is to study the hydrothermal ageing of zirconia doped with ceria and toughened with alumina (10Ce-TZP/Al2O3) composite, which has been sintered by microwave employing two different frequencies: 2.45 and 5.8 GHz. Microwave heating technology is based on the absorption of electromagnetic radiation by the material, which allows the sample to be heated. So far, most microwave heating equipments use 2.45 GHz; accordingly, the novelty of this study is to employ a frequency of 5.8 GHz and to investigate its effect on LTD. LTD is carried out in an autoclaved in steam at 120 ºC and 1.2 bar, because these conditions accelerate the hydrothermal aging process3. In order to characterize the degraded samples, micro-Raman spectroscopy, AFM, nanoindentation technique and electronic microscopy have been performed.   References 1.           Norton, M. R., Yarlagadda, R., Anderson, G. H. J. Bone Joint Surg. Br., 2002, 84–B, 631–635. 2.           Fabbri, P., Piconi, C., Burresi, E., Magnani, G., Mazzanti, F., Mingazzini, C. Dent. Mater., 2014. 3.           Presenda, Á., Salvador, M. D., Moreno, R., Borrell, A. J. Am. Ceram. Soc., 2015, 98, 3680–3689.   
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