王玲  (教授)

博士生导师 硕士生导师

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入职时间:2011-08-29

学历:博士研究生毕业

性别:女

学位:博士

在职信息:在职

毕业院校:利兹大学

学科:机械工程

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Experimental validation of finite element modeling of a modular metal-on-polyethylene total hip replacement

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发布时间:2025-04-30

发布时间:2025-04-30

论文名称:Experimental validation of finite element modeling of a modular metal-on-polyethylene total hip replacement

发表刊物:Part H: Journal of Engineering in Medicine

摘要:Finite element models are becoming increasingly useful tools to conduct parametric analysis, design optimisation and pre-clinical testing for hip joint replacements. However, the verification of the finite element model is critically important. The purposes of this study were to develop a three dimensional anatomic finite element model for a modular metal-on-polyethylene total hip replacement for predicting its contact mechanics and to conduct experimental validation for a simple finite element model which was simplified from the anatomic finite element model. An anatomic modular metal on-polyethylene total hip replacement model (anatomic model) was first developed and then simplified with reasonable accuracy to a simple modular total hip replacement model (simplified model) for validation. The contact areas on the articulating surface of three polyethylene liners of modular metal-on polyethylene total hip replacement bearings with different clearances were measured experimentally in the Leeds ProSim hip joint simulator under a series of loading conditions and different cup inclination angles. The contact areas predicted from the simplified model were then compared with that measured experimentally under the same conditions. The results showed that the simplification made for the anatomic model did not change the predictions of contact mechanics of the modular metal-on-polyethylene total hip replacement substantially (less than 12% for contact stresses and contact areas). Good agreements of contact areas between the finite element predictions from the simplified model and experimental measurements were obtained, with maximum difference of 14% across all conditions considered. This indicated that the simplification and assumptions made in the anatomic model were reasonable and the finite element predictions from the simplified model were valid.

合写作者:Xijin Hua, Ling Wang, et al.

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发表时间:2014-06-01

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