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首页> 外文期刊>Journal of biomedical materials research, Part A >A novel ultra high molecular weight polyethylene-hyaluronan microcomposite for use in total joint replacements. II. Mechanical and tribological property evaluation
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A novel ultra high molecular weight polyethylene-hyaluronan microcomposite for use in total joint replacements. II. Mechanical and tribological property evaluation

机译:一种用于全关节置换的新型超高分子量聚乙烯-透明质酸微复合材料。二。力学和摩擦学性能评估

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摘要

The mechanical and tribological properties of a new biomaterial, an ultra high molecular weight polyethylene-hyaluronan (UHMWPE-HA) microcomposite, were investigated in this article, which is Part II of a two-part study. Part I presented the synthesis and physical/chemical characterization of the novel microcomposites. The microcomposite was developed for bearing surfaces of total joint replacements and was designed to enhance lubrication and improve wear resistance compared to non-crosslinked UHMWPE. Pin-on-flat wear tests with cross-path motion demonstrated significant decreases for both the wear and wear rate of UHMWPE with the presence of hyaluronan (HA) within and on the microcomposite. Compared to noncrosslinked UHMWPE, a maximum decrease of 56 percent in wear and a maximum decrease of 31 percent in wear rate were observed at 1.0 million cycles. Inferior tensile properties were observed for the microcomposites when compared to noncrosslinked UHMWPE, which resulted from poor intermolecular entanglement of the UHMWPE caused by low remolding temperature throughout micro-composite manufacturing. Similar results were observed for the sham control, which was processed in the same way as the microcomposite, except for the addition of HA.
机译:本文研究了一种新型生物材料超高分子量聚乙烯-透明质酸(UHMWPE-HA)微复合材料的力学和摩擦学特性,这是一项由两部分组成的研究的第二部分。第一部分介绍了新型微复合材料的合成和理化性质。该微复合材料专为全关节置换的轴承表面而开发,与非交联的UHMWPE相比,其设计目的是增强润滑性并提高耐磨性。带有交叉路径运动的销钉磨损试验表明,在复合材料内部和表面均存在乙酰透明质酸(HA)的情况下,UHMWPE的磨损和磨损率均显着降低。与非交联的UHMWPE相比,在100万次循环中,磨损最大降低了56%,磨损率最大降低了31%。与非交联的UHMWPE相比,微复合材料的拉伸性能较差,这是由于整个微复合材料生产过程中的低重塑温度导致UHMWPE的分子间缠结较差所致。对于假对照,观察到了相似的结果,除了添加HA外,采用与微复合材料相同的方法进行处理。

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