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Finite element study of contact pressure distribution on inner and outer liner in the bipolar hip prosthesis

机译:双极髋关节假体内,外衬层接触压力分布的有限元研究

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摘要

Wear in the hip prosthesis due to sliding contact as a product of human activity is a phenomenon which cannot be avoided. In general, there are two model of hip prostheses which are widely used in total hip replacement, i.e. unipolar and bipolar models. Wear in the bipolar model is more complex than the unipolar model due to its contact motion. The bipolar model has two contact mechanisms while the unipolar model has only one contact mechanism. It means that the bipolar model has two wear positions, i.e. wear on inner and outer liner surface. Fortunately, wear phenomena in the hip prosthesis can be predicted by analytical or numerical method. Wear on the inner and outer liner surface in the bipolar model itself can be early predicted by contact pressure distribution that is obtained from contact mechanic analysis.The contact pressure distribution itself is an essential variable in wear equations. This paper is aimed to studythe difference of the contact pressure distribution on the inner and outer liner surface in the bipolar model. To obtain the contact pressure distribution at each surface, contact mechanic analysis on the inner and outer liner surface by analytical and numerical method were performed. Results showedthat there was significant difference of the contact pressure distribution on the inner and outer liner surface in the bipolar model. Therefore, it is expected that there is significant wear difference on the inner and outer liner in the bipolar model.
机译:由于滑动接触是人类活动的产物而导致的髋关节假体磨损是无法避免的现象。通常,存在两种在全髋关节置换中广泛使用的髋关节假体模型,即单极模型和双极模型。由于双极模型的接触运动,其磨损比单极模型更复杂。双极模型有两种接触机制,而单极模型只有一种接触机制。这意味着双极模型具有两个磨损位置,即内衬和外衬表面的磨损。幸运的是,髋关节假体的磨损现象可以通过分析或数值方法进行预测。双极模型本身内衬和外衬表面的磨损可以通过接触力学分析获得的接触压力分布进行早期预测。接触压力分布本身是磨损方程中的重要变量。本文旨在研究双极模型中内衬和外衬表面接触压力分布的差异。为了获得每个表面的接触压力分布,通过分析和数值方法对内衬和外衬表面进行了接触力学分析。结果表明,在双极模型中,内衬和外衬表面的接触压力分布存在显着差异。因此,预计在双极模型中,内衬和外衬上会有明显的磨损差异。

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