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Characterisation of the wear mechanisms in retrieved alumina-on-alumina total hip replacements

机译:回收氧化铝 - 氧化铝全髋关节置换术中磨损机制的表征

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摘要

Due to their superior wear performance and biocompatibility compared to alternative polymer/metal prostheses, alumina-on-alumina total hip replacements (THRs) are extensively used for young and more active patients. However, the understanding of the wear mechanisms of alumina in vivo remains relatively poor, and there remains little quantitative understanding of the structural and chemical changes at the articulating surface. In the current study, the surface and sub-surface microstructures of retrieved in vivo alumina THRs are presented. Severe wear, also called stripe wear, was observed in all cases. The transition between the stripe wear and the mild wear was very sharp. Site-specific cross-section TEM specimens were prepared by Focused Ion Beam (FIB) at the stripe boundary region. The results suggest predominantly intergranular fracture occurred that was restricted to the outer layer of grains below the surface, with transgranular fracture also occurring in the stripe wear region. Cracking was believed to be initiated by extensive dislocation slip. A thin layer of hydroxide was also observed at the extreme surface of the mild wear region by aberration-corrected high resolution transmission electron microscopy (HRTEM). The wear mechanisms are discussed.
机译:与替代的聚合物/金属假体相比,由于其优越的耐磨性能和生物相容性,氧化铝对氧化铝全髋关节置换术(THR)被广泛用于年轻和活跃的患者。然而,对氧化铝在体内的磨损机理的理解仍然相对较差,并且对关节表面的结构和化学变化的定量了解仍然很少。在当前的研究中,介绍了体内回收的氧化铝THRs的表面和亚表面微观结构。在所有情况下均观察到严重磨损,也称为条纹磨损。条纹磨损和轻度磨损之间的过渡非常明显。通过聚焦离子束(FIB)在条纹边界区域制备特定位置的横截面TEM标本。结果表明,主要发生在晶间断裂,仅限于表面之下的晶粒的外层,而跨晶断裂也发生在条纹磨损区域。据信破裂是由大量的位错滑移引起的。通过像差校正的高分辨率透射电子显微镜(HRTEM),在轻度磨损区域的极端表面也观察到了一层薄薄的氢氧化物。讨论了磨损机理。

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