Liu Feng, Jin Zhongming, Roberts Paul, Grigoris Peter
Institute of Medical and Biological Engineering, School of Mechanical Engineering, University of Leeds, Leeds, LS2 9JT, UK.
J Biomech. 2007;40(6):1340-9. doi: 10.1016/j.jbiomech.2006.05.015. Epub 2006 Jul 7.
An effective lubrication can significantly reduce wear of metal-on-metal artificial hip joints. The improvement of the lubrication can be achieved through the optimisation of the bearing geometry in terms of a small clearance and/or the structural support such as a polyethylene backing underneath a metallic bearing in a sandwich acetabular cup form. The separate effects of these two factors on fluid film lubrication of 28 mm diameter metal-on-metal total hip joints under walking conditions were numerically investigated in this paper. The results show that a larger lubricant film due to the polyethylene backing can be significantly enhanced by the transient squeeze-film action, particularly during the stance phase, and a similar lubricant film can be developed for both the monolithic cup relying on the smaller clearance and the sandwich cup benefiting from the polyethylene backing. Both cup systems can function in a wide range of lubrication regimes, covering both mixed and fluid film, under the current design and manufacture conditions.
有效的润滑可显著减少金属对金属人工髋关节的磨损。通过优化轴承几何形状(小间隙)和/或结构支撑(如三明治髋臼杯形式的金属轴承下方的聚乙烯衬垫)可实现润滑的改善。本文对这两个因素在行走条件下对直径28毫米金属对金属全髋关节流体膜润滑的单独影响进行了数值研究。结果表明,聚乙烯衬垫产生的较大润滑膜可通过瞬态挤压膜作用得到显著增强,尤其是在站立阶段,并且对于依赖较小间隙的整体杯和受益于聚乙烯衬垫的三明治杯,均可形成类似的润滑膜。在当前设计和制造条件下,两种杯系统均可在广泛的润滑状态下运行,包括混合润滑和流体膜润滑。