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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part H. Journal of Engineering in Medicine >Importance of pin geometry on pin-on-plate wear testing of hard-on-hard bearing materials for artificial hip joints
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Importance of pin geometry on pin-on-plate wear testing of hard-on-hard bearing materials for artificial hip joints

机译:销几何形状对人工髋关节硬对硬轴承材料的销对板磨损测试的重要性

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摘要

The contact mechanics between the pin and the plate used in simple wear screening tests were investigated in this study. Both soft-on-hard, such as ultra-high molecular weight polyethylene (UHMWPE)-on-metal or UHMWPE-on-ceramic, and hard-on-hard, such as metal-on-metal, bearing couples were considered. The effect of the pin geometry and the misalignment between the pin and the plate were investigated on the predicted contact pressure distribution at the bearing surfaces using the finite element method. It was demonstrated that in the case of soft-on-hard bearing couples, neither the geometrical discontinuity of the pin surface nor the misalignment could cause a significant increase in the contact stress. However, for hard-on-hard combinations, even with a very small misalignment of 0.5° between the pin and the plate, the geometrical discontinuity could lead to a more than tenfold increase in the predicted contact stress. This elevated contact stress may lead to a large scatter in the wear data and, even more importantly, structural damage of the bearing surfaces.
机译:在这项研究中,研究了用于简单磨损筛选测试的销钉与板之间的接触力学。考虑了硬对硬(例如,金属上的超高分子量聚乙烯(UHMWPE)或陶瓷对超高分子量聚乙烯)和硬对(例如,金属对金属)的轴承对。使用有限元方法研究了销的几何形状以及销与板之间的未对准对轴承表面预计的接触压力分布的影响。已经证明,在软对硬轴承对的情况下,销表面的几何不连续性和未对准都不会导致接触应力的显着增加。但是,对于硬对硬组合,即使销和板之间的偏移很小,只有0.5°,几何上的不连续也会导致预计的接触应力增加十倍以上。这种升高的接触应力可能会导致磨损数据出现较大的分散,甚至更重要的是,会导致轴承表面的结构损坏。

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