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髋关节植入物脱粘柄-骨水泥界面的建模:残余应力的影响。

Modelling debonded stem-cement interface for hip implants: effect of residual stresses.

作者信息

Nuño N, Amabili M

机构信息

Département de génie mécanique, Ecole de technologie supérieure, Université du Québec, 1100 rue Notre-Dame O., Montréal, Québec, Canada H3C 1K3.

出版信息

Clin Biomech (Bristol). 2002 Jan;17(1):41-8. doi: 10.1016/s0268-0033(01)00104-8.

Abstract

OBJECTIVE

To assess the effect of the residual stresses due to cement curing on the load transfer of cemented hip implants.

DESIGN

The load transfer at the stem-cement interface of an idealized hip stem surrounded by cortical bone was investigated using a three-dimensional finite element analysis. A debonded stem-cement interface was considered to simulate a highly polished stem in contact with cement; Coulomb friction at the stem-cement interface was considered.

BACKGROUND

Numerical analyses on the load transfer of cemented hip implants do not include residual stresses due to cement curing at the stem-cement interface.

METHODS

The magnitude of the residual stresses was determined experimentally. In the finite element model, non-linear contact elements modelled the debonded stem-cement interface. In particular, the compressive radial residual stresses that are generated at the interface, due to the cement expansion during curing, were treated similar to a press-fit problem.

RESULTS

The cement stress distributions were affected by the magnitude of the residual stresses. Failing to include residual stresses underestimated the cement stresses at the interface, mainly affecting the radial and hoop stresses. The load was transferred from the stem to the cement more uniformly along the interface once residual stresses were included.

CONCLUSIONS

Because there is no chemical bond at the interface between the stem and cement, the interface resistance depends on friction thus radial residual compressive stresses developed by the cement curing play a direct role.

RELEVANCE

Implant loosening of cemented hip implants is one of the major causes of late failure of the arthroplasty. The load is transferred from the stem to the bone primarily across the interfaces, consequently modelling accurately the interface is essential in predicting the load transfer.

摘要

目的

评估骨水泥固化产生的残余应力对骨水泥型髋关节植入物载荷传递的影响。

设计

采用三维有限元分析研究了被皮质骨包围的理想化股骨干周围骨水泥-假体界面处的载荷传递情况。考虑假体-骨水泥界面脱粘以模拟高度抛光的假体与骨水泥接触的情况;考虑了假体-骨水泥界面处的库仑摩擦。

背景

关于骨水泥型髋关节植入物载荷传递的数值分析未考虑假体-骨水泥界面处骨水泥固化产生的残余应力。

方法

通过实验确定残余应力的大小。在有限元模型中,使用非线性接触单元模拟脱粘的假体-骨水泥界面。特别是,将固化过程中由于骨水泥膨胀在界面处产生的径向压缩残余应力视为类似于压配合问题来处理。

结果

骨水泥应力分布受残余应力大小的影响。未考虑残余应力会低估界面处的骨水泥应力,主要影响径向和环向应力。考虑残余应力后,载荷沿界面从假体向骨水泥的传递更加均匀。

结论

由于假体与骨水泥之间的界面不存在化学键,界面阻力取决于摩擦力,因此骨水泥固化产生的径向残余压应力起直接作用。

意义

骨水泥型髋关节植入物的假体松动是关节置换术后期失败的主要原因之一。载荷主要通过界面从假体传递至骨骼,因此准确模拟界面对于预测载荷传递至关重要。

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