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首页> 外文期刊>Journal of the European Ceramic Society >Key role of processing to avoid low temperature ageing in alumina zirconia composites for orthopaedic application
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Key role of processing to avoid low temperature ageing in alumina zirconia composites for orthopaedic application

机译:用于骨科应用的氧化铝氧化锆复合材料避免低温老化的加工过程的关键作用

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摘要

Zirconia toughened alumina (ZTA) composites are considered today as promising materials for orthopaedic applications, since they offer a higher crack resistance than alumina and zirconia monoliths. However, despite the presence of zirconia in the material, there is lack in literature concerning the crucial question of ageing. In particular, the role of the quality of the dispersion of zirconia in the alumina matrix has never been discussed. In this work, the dispersion behaviour of alumina and zirconia powder is studied. Using an optimal dispersion at pH 4.5, homogeneous ZTA are obtained. Neither alumina nor zirconia aggregates are present in the final microstructure. Ageing experiments are conducted on ZTA of different compositions for both yttria stabilized and unstabilized zirconia. The results are compared with previous works where aggregates are present in the final materials. The ageing kinetics show a drastic difference between ZTA with or without aggregates. For ZTA containing unstabilized zirconia, aggregates are transformed during cooling, giving rise to an ageing sensitivity, even for low zirconia content (i.e. 10 vol. percent). For ZTA containing yttria stabilized zirconia, aggregates transformation occurs during the first stages of ageing. On the other hand, no transformation at all is observed for materials without aggregates, provided that the zirconia content is kept below the percolation threshold (16 vol. percent).
机译:如今,氧化锆增韧氧化铝(ZTA)复合材料被认为是骨科应用的有前途的材料,因为它们比氧化铝和氧化锆整体材料具有更高的抗裂性。然而,尽管材料中存在氧化锆,但有关老化这一关键问题的文献却很少。特别是,从未讨论过氧化锆在氧化铝基质中的分散质量的作用。在这项工作中,研究了氧化铝和氧化锆粉末的分散行为。使用pH 4.5的最佳分散液,可以获得均质的ZTA。最终的微观结构中既不存在氧化铝聚集体也不存在氧化锆聚集体。对氧化钇稳定和不稳定的氧化锆,在不同组成的ZTA上进行了老化实验。将结果与最终材料中存在聚集体的先前工作进行比较。老化动力学显示有或没有聚集体的ZTA之间的巨大差异。对于含有不稳定的ZTA的ZTA,即使在氧化锆含量较低(即10%体积)的情况下,聚集体在冷却过程中也会发生转变,从而引起老化敏感性。对于含氧化钇稳定的氧化锆的ZTA,在老化的第一阶段会发生聚集体转变。另一方面,对于没有聚集体的材料,只要氧化锆含量保持在渗透阈值(16体积%)以下,则根本不会观察到相变。

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