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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Failure analysis of sandwich-type ceramk-on-ceramic hip joints: A spectroscopic investigation into the role of the polyethylene shell component
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Failure analysis of sandwich-type ceramk-on-ceramic hip joints: A spectroscopic investigation into the role of the polyethylene shell component

机译:夹层式陶瓷对陶瓷髋关节的失效分析:对聚乙烯壳成分作用的光谱研究

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摘要

The mechanisms leading to systematic failure in modular acetabular components with a sandwich insertion (alumina/polyethylene/titanium) have been reconsidered in light of the newly collected Raman spectroscopic results. Raman assessments were conducted on the polyethylene shells, which belonged to a series of six failed sandwich implants with in vivo lifetimes ranging between 2 and 9 yr. With only one exception, all implants commonly showed dislodgment of the polyethylene shell during radiographic analyses prior to revision surgery. The polyethylene shell slipped out of the backing titanium shell, while always remaining integer to the ceramic liner. Four implants fractured at the ceramic liners, but their fractures occurred according to distinctly different patterns, which could be rationalized and classified. The insertion of the polyethylene layer, originally conceived to reduce the rigidity of the ceramic-on-ceramic bearing and to prevent impingement between the ceramic liner rim and the femoral neck, played a role in implant failure with its initial (asymmetric) thickness reduction due to creep deformation (eventually followed by cup rotation and backside wear). The results of the present spectroscopic investigation suggest that a simplistic failure classification of the sandwich-type implant as a "ceramic fracture failure" could be misleading and might represent a confounding factor in judging about the reliability of modern ceramic implants.
机译:鉴于新收集的拉曼光谱结果,已经重新考虑了导致带有三明治夹层(氧化铝/聚乙烯/钛)的模块化髋臼组件系统性失效的机制。拉曼评估是对聚乙烯外壳进行的,该外壳属于一系列六个失败的三明治植入物,其体内寿命在2至9年之间。除一个例外,所有植入物通常在翻修手术前的X射线分析过程中显示出聚乙烯外壳脱落。聚乙烯壳从衬里钛壳中滑出,而陶瓷衬里始终保持整数。四个植入物在陶瓷衬里破裂,但其破裂发生的方式明显不同,可以合理化和分类。聚乙烯层的插入最初旨在降低陶瓷对陶瓷轴承的刚度并防止陶瓷衬里边缘和股骨颈之间的碰撞,但由于其初始(不对称)厚度减小,在植入失败中起了作用蠕变变形(最终是杯旋转和背面磨损)。本光谱研究的结果表明,将夹心型植入物的简单失效分类为“陶瓷断裂失效”可能会产生误导,并可能成为判断现代陶瓷植入物可靠性的一个混杂因素。

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