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评估赫兹接触理论在边缘负荷人工髋关节中的适用性。

Assessment of the applicability of the Hertzian contact theory to edge-loaded prosthetic hip bearings.

机构信息

Department of Mechanical Engineering, University of Utah, Salt Lake City, UT 84112, USA.

出版信息

J Biomech. 2011 Nov 10;44(16):2802-8. doi: 10.1016/j.jbiomech.2011.08.007. Epub 2011 Oct 1.

Abstract

The components of prosthetic hip bearings may experience in-vivo subluxation and edge loading on the acetabular socket as a result of joint laxity, causing abnormally high, damaging contact stresses. In this research, edge-loaded contact of prosthetic hips is examined analytically and experimentally in the most commonly used categories of material pairs. In edge-loaded ceramic-on-ceramic hips, the Hertzian contact theory yields accurate (conservatively, <10% error) predictions of the contact dimensions. Moreover, the Hertzian theory successfully captures slope and curvature trends in the dependence of contact patch geometry on the applied load. In an edge-loaded ceramic-on-metal pair, a similar degree of accuracy is observed in the contact patch length; however, the contact width is less accurately predicted due to the onset of subsurface plasticity, which is predicted for loads >400N. The Hertzian contact theory is shown to be ill-suited to edge-loaded ceramic-on-polyethylene pairs due to polyethylene's nonlinear material behavior. This work elucidates the methods and the accuracy of applying classical contact theory to edge-loaded hip bearings. The results help to define the applicability of the Hertzian theory to the design of new components and materials to better resist severe edge loading contact stresses.

摘要

人工髋关节的组成部件可能会因为关节松弛而在体内出现半脱位和在髋臼窝上的边缘负荷,从而导致异常高的、有损伤的接触应力。在这项研究中,最常用的材料对中对人工髋关节的边缘负荷接触进行了分析和实验研究。在边缘负荷陶瓷对陶瓷髋关节中,赫兹接触理论对接触尺寸的预测是准确的(保守地说,误差<10%)。此外,赫兹理论成功地捕捉到了接触区域几何形状对所施加负载的依赖性中的斜率和曲率趋势。在边缘负荷陶瓷对金属对中,接触区域长度的预测具有相似的准确性;然而,由于表面下的塑性开始,接触区域宽度的预测不够准确,这是由于负载>400N 引起的。由于聚乙烯的非线性材料行为,赫兹接触理论不适用于边缘负荷陶瓷对聚乙烯对。这项工作阐明了将经典接触理论应用于边缘负荷髋关节的方法和准确性。研究结果有助于确定赫兹理论在设计新组件和材料以更好地抵抗严重边缘负荷接触应力方面的适用性。

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