首页> 外文期刊>Journal of biomedical materials research, Part A >Phase transformation, roughness, and microhardness of artificially aged yttria- and magnesia-stabilized zirconia femoral heads
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Phase transformation, roughness, and microhardness of artificially aged yttria- and magnesia-stabilized zirconia femoral heads

机译:人工老化的氧化钇和氧化镁稳定的氧化锆股骨头的相变,粗糙度和显微硬度

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摘要

Yttria-stabilized zirconia ceramic (Y-TZP) has been used in total hip arthroplasty for many years but is susceptible to low-temperature aging. Medical-grade magnesia-stabilized zirconia (Mg-PSZ) is less commonly used; however, it has been shown to resist phase transformation. The purpose of this study was to directly compare the effects of artificial aging on phase transformation, surface roughness, and Vickers microhardness on Y-TZP and Mg-PSZ femoral heads. Y-TZP and Mg-PSZ heads were artificially aged in an autoclave in stages up to a total of 49 h. The surface roughness of Y-TZP significantly increased with each stage of artificial aging. Y-TZP heads aged for 49 h had a significantly higher monoclinic phase concentration and roughness, and a significantly lower microhardness, than nonaged Y-TZP heads. Artificial aging also caused the surface of Y-TZP to exhibit a lumpy "orange peel"-like appearance with a significantly higher mean peak height, suggesting that artificial aging causes individual grains to be pushed out of the surface. In contrast, artificial aging did not significantly affect the properties of Mg-PSZ heads. These findings suggest that Mg-PSZ is a satisfactory material for orthopaedic implant use, while Y-TZP, in the form tested, is not adequately stable for use as a bearing surface.
机译:氧化钇稳定的氧化锆陶瓷(Y-TZP)已在全髋关节置换术中使用了很多年,但容易受到低温老化的影响。医用级氧化镁稳定的氧化锆(Mg-PSZ)较少使用;但是,已经证明它可以抵抗相变。这项研究的目的是直接比较人工时效对Y-TZP和Mg-PSZ股骨头的相变,表面粗糙度和维氏显微硬度的影响。将Y-TZP和Mg-PSZ头在高压釜中人工老化,分阶段进行长达49小时。 Y-TZP的表面粗糙度随着人工时效的每个阶段而显着增加。与未老化的Y-TZP头相比,老化49 h的Y-TZP头具有明显更高的单斜晶相浓度和粗糙度,以及显着更低的显微硬度。人工时效还导致Y-TZP的表面呈现出块状的“橙色果皮”状外观,且平均峰高明显更高,这表明人工时效会导致单个晶粒被推出表面。相比之下,人工时效并未显着影响Mg-PSZ磁头的性能。这些发现表明,Mg-PSZ是用于整形外科植入物的令人满意的材料,而Y-TZP(经测试的形式)不能足够稳定地用作支撑表面。

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