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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part H. Journal of Engineering in Medicine >Contact mechanics analysis of metal-on-metal hip resurfacing prostheses
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Contact mechanics analysis of metal-on-metal hip resurfacing prostheses

机译:金属对金属髋关节表面修复假体的接触力学分析

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Finite-element method was employed to study the contact mechanics in metal-on-metal hip resurfacing prostheses, with particular reference to the effects of bone quality, the fixation condition between the acetabular cup and bone, and the clearance between the femoral head and the acetabular cup. Simple finite-element bone models were developed to simulate the contact between the articulating surfaces of the femoral head and the acetabular cup. The stresses within the bone structure were also studied. It was shown that a decrease in the clearance between the acetabular cup and femoral head had the largest effect on reducing the predicted contact-pressure distribution among all the factors considered in this study. It was found that as the clearance was reduced, the influence of the underlying materials, such as bone and cement, became increasingly important. Stress shielding was determined to occur in the bone tissue surrounding the hip resurfacing prosthesis considered in this study. However, the stress-shielding effects predicted were less than those observed in conventional total hip replacements. Both the effects of bone quality (reduction in elastic modulus) and the fixation condition between the cup and the bone were found to have a negligible effect on the predicted contact mechanics at the bearing surface. The loading was found to have a relatively small effect on the predicted maximum contact pressure at the bearing surface; this was attributed to an increase in contact area as the load was increased.
机译:采用有限元方法研究金属对金属髋关节表面修复假体的接触力学,尤其要注意骨质量,髋臼杯与骨之间的固定情况以及股骨头与股骨头之间的间隙的影响。髋臼杯。开发了简单的有限元骨模型来模拟股骨头与髋臼杯的关节表面之间的接触。还研究了骨骼结构内的应力。结果表明,在本研究中考虑的所有因素中,髋臼杯与股骨头之间间隙的减小对减小预计的接触压力分布的影响最大。发现随着间隙的减小,诸如骨头和水泥的底层材料的影响变得越来越重要。确定应力屏蔽发生在本研究中考虑的髋关节表面置换假体周围的骨组织中。但是,预测的应力屏蔽效果比传统的全髋关节置换术中观察到的效果要小。骨骼质量(弹性模量降低)的影响以及杯与骨骼之间的固定条件的影响都对轴承表面的预计接触力学影响微不足道。发现载荷对轴承表面预计最大接触压力的影响较小。这归因于随着负载增加接触面积的增加。

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