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装配力在髋关节植入物头颈连接处摩擦腐蚀行为中的作用:一种自适应有限元方法

The Role of the Assembly Force in the Tribocorrosion Behaviour of Hip Implant Head-Neck Junctions: An Adaptive Finite Element Approach.

作者信息

Fallahnezhad Khosro, Feyzi Mohsen, Hashemi Reza, Taylor Mark

机构信息

Medical Device Research Institute, College of Science and Engineering, Flinders University, 1284 South Road, Clovelly Park, SA 5042, Australia.

出版信息

Bioengineering (Basel). 2022 Nov 1;9(11):629. doi: 10.3390/bioengineering9110629.

Abstract

The cyclic loading, in the corrosive medium of the human body, results in tribocorrosion at the interface of the head-neck taper junction of hip implants. The resulting metal ions and wear debris adversely affect the local tissues. The force applied by surgeons to assemble the junction has proven to play a major role in the mechanics of the taper junction which, in turn, can influence the tribocorrosion damage. Recently, finite element method has been used to predict the material loss at the head-neck interface. However, in most finite element studies, the contribution of electrochemical corrosion has been ignored. Therefore, a detailed study to investigate the influence of the assembly force on the tribocorrosive behaviour of the head-neck junction, which considers both the mechanical and chemical material removal, is of paramount interest. In this study, a finite-element-based algorithm was used to investigate the effect of assembly force on the tribocorrosion damage at the junction interface, for over four million cycles of simulated level gait. The patterns of the material removal in the modelling results were compared with the damage patterns observed in a group of retrieved modular hip implants. The results of this study showed that for different cases, chemical wear was in the range of 25-50% of the total material loss, after four million cycles. A minimum assembly force (4 kN for the studied cases) was needed to maintain the interlock in the junction. The computational model was able to predict the damage pattern at the retrieved head-neck interface.

摘要

在人体的腐蚀性介质中,循环载荷会导致髋关节植入物头颈锥度连接处的界面发生摩擦腐蚀。由此产生的金属离子和磨损碎屑会对局部组织产生不利影响。事实证明,外科医生在组装连接处时施加的力在锥度连接的力学中起着重要作用,而这反过来又会影响摩擦腐蚀损伤。最近,有限元方法已被用于预测头颈界面处的材料损失。然而,在大多数有限元研究中,电化学腐蚀的作用被忽略了。因此,一项详细研究来探究组装力对头颈连接处摩擦腐蚀行为的影响,该研究同时考虑机械和化学材料去除,具有至关重要的意义。在本研究中,使用了一种基于有限元的算法来研究组装力对连接处界面摩擦腐蚀损伤的影响,模拟了超过四百万次的水平步态循环。将建模结果中的材料去除模式与一组回收的模块化髋关节植入物中观察到的损伤模式进行了比较。本研究结果表明,对于不同情况,在四百万次循环后,化学磨损占总材料损失的25%-50%。需要最小组装力(对于所研究的情况为4 kN)来维持连接处的互锁。该计算模型能够预测回收的头颈界面处的损伤模式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e4b4/9687484/77b58ec6625d/bioengineering-09-00629-g001.jpg

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