首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part H. Journal of Engineering in Medicine >The wear of ultra-high molecular weight polyethylene sliding on metallic and ceramic counterfaces representative of current femoral surfaces in joint replacement
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The wear of ultra-high molecular weight polyethylene sliding on metallic and ceramic counterfaces representative of current femoral surfaces in joint replacement

机译:超高分子量聚乙烯在金属和陶瓷相对面上滑动的磨损,代表关节置换中当前的股骨表面

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摘要

A number of studies have investigated the influence of surface roughness on the wear of ultra-high molecular weight polyethylene (UHMWPE) in total joint replacement. The results of these studies have shown that the wear factor is proportional tothe counterface roughness raised to a power greater than one. In this laboratory study, the effect of surface finish of several biomaterials on the wear of UHMWPE was studied. The study was conducted using reciprocating pin-on-plate wear tests with bovine serum as a lubricant. The biomaterials investigated as the counterface material included stainless steel, cast cobalt chrome (CoCr), CoCr (ASTM F799), alumina ceramic and zirconia ceramic. The counterface topographies of the wear plates were producedusing techniques representative of current manufacturing methods. The surface roughness of the wear plates was varied in the range R{sub}a = 0.005-0.04μm; this was representative of femoral heads and femoral knee components currently used clinically.Metals and ceramics with a similar surface roughness produced a similar wear rate of UHMWPE. For the limited range of smooth counterfaces used in this study only a moderate correlation was found between the surface roughness and the wear factors. For achange in counterface roughness R{sub}a of 0.005 to 0.04μm, the wear factor increased from 7.4±1.6 to 16.5±2.4×10{sup}-9 mm{sup}3/N m (mean±standard error). This variation in counterface roughness had much less effect in wear than previously reported for rougher counterfaces. For an extended range of counterface roughness, a stronger correlation was found using an exponential function for the regression fit. The exponential function shows the benefits of decreased wear with decreased surfaceroughness. Although the wear rate decreased less rapidly with decreased counterface roughness for R{sub}a values below 0.05μm, there were significant advantages to be gained from improved femoral head roughness to below 0.01μm R{sub}a.
机译:许多研究已经研究了表面粗糙度对全关节置换中超高分子量聚乙烯(UHMWPE)磨损的影响。这些研究的结果表明,磨损因数与相对表面粗糙度成正比,并提高到大于1的幂。在此实验室研究中,研究了几种生物材料的表面光洁度对UHMWPE磨损的影响。该研究使用往复式针板式磨损试验进行,牛血清作为润滑剂。被研究为对面材料的生物材料包括不锈钢,铸造钴铬合金(CoCr),钴铬合金(ASTM F799),氧化铝陶瓷和氧化锆陶瓷。耐磨板的相对表面形貌是使用代表当前制造方法的技术生产的。耐磨板的表面粗糙度在R {sub} a =0.005-0.04μm的范围内变化。这代表了目前临床上使用的股骨头和股骨膝关节组件。具有相似表面粗糙度的金属和陶瓷产生了相似的UHMWPE磨损率。对于本研究中使用的光滑对接面的有限范围,仅在表面粗糙度和磨损因子之间发现了适度的相关性。对于相对粗糙度R {a}从0.005到0.04μm的变化,磨损因数从7.4±1.6增加到16.5±2.4×10 {sup} -9mm {sup} 3 / N m(平均值±标准误差)。与先前报道的较粗糙的相对表面相比,相对表面粗糙度的这种变化对磨损的影响要小得多。对于较大范围的相对表面粗糙度,使用指数函数进行回归拟合发现了更强的相关性。指数函数显示出减少磨损和降低表面粗糙度的好处。尽管当R {sub} a值低于0.05μm时,磨损率随着相对粗糙度降低而降低的速度较慢,但​​将股骨头粗糙度提高至0.01μmR {sub} a以下,则具有明显的优势。

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