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一种结合实验和有限元方法来分析全髋关节置换中股骨头-柄部锥形连接的微动机制。

A combined experimental and finite element approach to analyse the fretting mechanism of the head-stem taper junction in total hip replacement.

作者信息

Bitter Thom, Khan Imran, Marriott Tim, Lovelady Elaine, Verdonschot Nico, Janssen Dennis

机构信息

1 Orthopaedic Research Lab, Radboudumc, Nijmegen, The Netherlands.

2 Zimmer Biomet, Swindon, UK.

出版信息

Proc Inst Mech Eng H. 2017 Sep;231(9):862-870. doi: 10.1177/0954411917713774. Epub 2017 Jun 9.

Abstract

Fretting corrosion at the taper interface of modular hip implants has been implicated as a possible cause of implant failure. This study was set up to gain more insight in the taper mechanics that lead to fretting corrosion. The objectives of this study therefore were (1) to select experimental loading conditions to reproduce clinically relevant fretting corrosion features observed in retrieved components, (2) to develop a finite element model consistent with the fretting experiments and (3) to apply more complicated loading conditions of activities of daily living to the finite element model to study the taper mechanics. The experiments showed similar wear patterns on the taper surface as observed in retrievals. The finite element wear score based on Archard's law did not correlate well with the amount of material loss measured in the experiments. However, similar patterns were observed between the simulated micromotions and the experimental wear measurements. Although the finite element model could not be validated, the loading conditions based on activities of daily living demonstrate the importance of assembly load on the wear potential. These findings suggest that finite element models that do not incorporate geometry updates to account for wear loss may not be appropriate to predict wear volumes of taper connections.

摘要

模块化髋关节植入物锥度界面处的微动腐蚀被认为是植入物失败的一个可能原因。本研究旨在更深入地了解导致微动腐蚀的锥度力学。因此,本研究的目的是:(1)选择实验加载条件,以重现从取出的部件中观察到的临床相关微动腐蚀特征;(2)建立与微动实验一致的有限元模型;(3)将更复杂的日常生活活动加载条件应用于有限元模型,以研究锥度力学。实验显示,锥度表面的磨损模式与从取出部件中观察到的相似。基于阿查德定律的有限元磨损评分与实验中测量的材料损失量相关性不佳。然而,在模拟微动和实验磨损测量之间观察到了相似的模式。尽管有限元模型无法得到验证,但基于日常生活活动的加载条件证明了装配载荷对磨损可能性的重要性。这些发现表明,未纳入几何形状更新以考虑磨损损失的有限元模型可能不适用于预测锥度连接的磨损量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/137d/5562336/acd12a9d77ae/10.1177_0954411917713774-fig1.jpg

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