首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Advanced nanocomposite materials for orthopaedic applications. I. A long-term in vitro wear study of zirconia-toughened alumina.
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Advanced nanocomposite materials for orthopaedic applications. I. A long-term in vitro wear study of zirconia-toughened alumina.

机译:骨科应用的先进纳米复合材料。 I.氧化锆增韧氧化铝的长期体外磨损研究。

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The use of ceramic-on-ceramic (alumina- and zirconia-based) couplings in hip joint prostheses has been reported to produce lower wear rates than other combinations (i.e., metal-on-polyethylene and ceramic-on-polyethylene). The addition of zirconia into an alumina matrix (zirconia-toughened alumina, ZTA) has been reported to result in an enhancement of flexural strength, fracture toughness, and fatigue resistance. The development of new processing routes in nonaqueous media has allowed to obtain high-density ZTA nanocomposites with a very homogeneous microstructure and a significantly smaller and narrower particle-size distribution of zirconia than conventional powder mixing methods. The aim of the present study was to set up and validate a new ZTA nanocomposite by testing its biocompatibility and wear behavior in a hip-joint simulator in comparison with commercial alumina and experimental alumina specimens. The primary osteoblast proliferation onto ZTA nanocomposite samples was found to be not significantly different from that onto commercial alumina samples. After 7 million cycles, no significant differences were observed between the wear behaviors of the three sets of cups. In this light, it can be affirmed that ZTA nanocomposite materials can offer the option of improving the lifetime and reliability of ceramic joint prostheses.
机译:据报道,在髋关节假体中使用陶瓷-陶瓷(氧化铝和氧化锆基)联轴器的磨损率低于其他组合(即,金属-聚乙烯和聚乙烯-陶瓷)。据报道,将氧化锆添加到氧化铝基体中(氧化锆增韧的氧化铝,ZTA)可以提高弯曲强度,断裂韧性和抗疲劳性。在非水介质中新工艺路线的发展已允许获得高密度ZTA纳米复合材料,该复合材料具有非常均匀的微观结构,并且氧化锆的粒度分布比常规粉末混合方法小得多和窄。本研究的目的是通过与商业氧化铝和实验氧化铝样品进行比较,通过在髋关节模拟器中测试其生物相容性和磨损行为,来建立和验证新型ZTA纳米复合材料。发现在ZTA纳米复合材料样品上的原始成骨细胞增殖与在商业氧化铝样品上的增殖没有显着差异。在700万次循环之后,三组杯子的磨损行为之间没有发现显着差异。因此,可以肯定的是,ZTA纳米复合材料可以提供改善陶瓷假体寿命和可靠性的选择。

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