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髋关节应用中含氧化锆股骨头的热液老化的次表面评估。

Sub-surface assessment of hydrothermal ageing in zirconia-containing femoral heads for hip joint applications.

机构信息

Univ Lyon, INSA Lyon, CNRS, MATEIS, UMR 5510, F-69621 Villeurbanne, France.

Univ Lyon, INSA Lyon, CNRS, MATEIS, UMR 5510, F-69621 Villeurbanne, France.

出版信息

Acta Biomater. 2018 Mar 1;68:286-295. doi: 10.1016/j.actbio.2017.12.021. Epub 2017 Dec 21.

Abstract

UNLABELLED

Zirconia-based materials have been used in orthopaedics since the 1980s, with large success, mainly thanks to transformation toughening. On the other hand, their main drawback is their potential sensitivity to hydrothermal ageing, i.e. tetragonal to monoclinic phase transformation on their surface in the presence of water. Hydrothermal ageing may result in roughness increase and microcracking of the surface. In this article the hydrothermal ageing behaviour of three medical-grade zirconia-based materials is assessed at high temperature and extrapolated to room or body temperature. The degradation is also characterized by FIB/SEM nano-tomography to better assess sub-surface evolutions. In both zirconia and alumina-toughened zirconia (ATZ), ageing results in the presence of a homogenous transformed layer of constant thickness whose growth rate is about 8 times slower in ATZ than in zirconia. Microcracking occurs in the entire transformed layer in zirconia, but was much less relevant in ATZ. Zirconia-toughened alumina (ZTA) is much less prone to ageing. In ZTA ageing results in a thin transformed layer in which the monoclinic fraction decreases with depth. No microcracking was observed in ZTA.

STATEMENT OF SIGNIFICANCE

This article details the microstructural evolution of the surface of three zirconia-based ceramics when exposed to water (hydrothermal ageing), and establishes a time-temperature equivalences of these evolutions. It shows that different zirconia-alumina composites do not degrade the same way: zirconia and alumina-toughened zirconia present a homogeneous degraded zone of constant thickness, whereas zirconia-toughened-alumina presents a gradient of transformation. These new findings will help understanding better the hydrothermal degradation of zirconia based materials, and in particular will facilitate a better prediction of the durability of zirconia-based devices such as orthopaedic implants and dental devices (implants, crowns, abutments…).

摘要

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自 20 世纪 80 年代以来,氧化锆基材料在骨科领域得到了广泛应用,取得了巨大成功,主要得益于相变增韧。另一方面,它们的主要缺点是潜在的对湿热老化敏感,即在水存在的情况下表面的四方相到单斜相转变。湿热老化可能导致表面粗糙度增加和微裂纹。本文评估了三种医用氧化锆基材料在高温下的湿热老化行为,并外推至室温或体温。还通过 FIB/SEM 纳米断层扫描对降解进行了特征描述,以更好地评估亚表面的演变。在氧化锆和氧化铝增韧氧化锆(ATZ)中,老化导致存在均匀的恒厚转变层,其生长速率在 ATZ 中比在氧化锆中慢约 8 倍。微裂纹出现在氧化锆的整个转变层中,但在 ATZ 中则不太明显。氧化锆增韧氧化铝(ZTA)则不易老化。在 ZTA 中,老化导致形成一个薄的转变层,其中单斜相分数随深度降低。在 ZTA 中未观察到微裂纹。

意义声明

本文详细描述了三种氧化锆基陶瓷表面在暴露于水(湿热老化)时的微观结构演变,并建立了这些演变的时间-温度等效性。结果表明,不同的氧化锆-氧化铝复合材料的降解方式不同:氧化锆和氧化铝增韧氧化锆呈现出均匀的退化区,厚度不变,而氧化锆增韧氧化铝则呈现出转变的梯度。这些新发现将有助于更好地理解氧化锆基材料的湿热降解,特别是将有助于更好地预测氧化锆基器械(如骨科植入物和牙科器械(植入物、牙冠、基台等)的耐用性。

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