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Effects of Synovial Fluid Constituents on Friction between UHMWPE and CoCrMo

机译:滑液成分对UHMWPE和COCRMO摩擦的影响

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In this study, the reciprocating pin-on-plate sliding test was conducted between ultra-high molecular weight polyethylene (UHMWPE) and CoCrMo alloy with test lubricants containing representative synovial fluid constituents, such as proteins, hyaluronic acid, and phospholipids, to understand their effects on the in vivo friction and wear characteristics of implanted joint prostheses. To explore some details of the friction and wear process, the wear track remaining on the UHMWPE plate specimens was morphologically analyzed by laser microscopy and chemically analyzed by Fourier transform infrared (FTIR) spectroscopy. The influence of each constituent on the rheological properties of the test lubricant was also evaluated using a rotational rheometer. We observed that proteins had a definitive impact on the friction and wear process; proteins adsorbed on the UHMWPE surface and increased friction and wear by changing the predominant friction and wear mechanism from abrasive to adhesive. Phospholipids also increased friction while hyaluronic acid decreased friction by increasing the viscosity of the lubricants and enhancing the fluid dynamic effect. However, when phospholipids and hyaluronic acid were mixed with proteins, they enhanced the entrainment of the protein molecules into the contact area and increased the wear of UHMWPE.
机译:在本研究中,在超高分子量聚乙烯(UHMWPE)和COCRMO合金之间进行往复式销板滑动试验,其试验润滑剂含有代表性滑膜液组分,例如蛋白质,透明质酸和磷脂,以了解他们的植入关节假体的体内摩擦和磨损特性的影响。为了探讨摩擦和磨损过程的一些细节,剩余的uhmWPE板标本上的耐磨轨道通过激光显微镜进行形态学地分析,并通过傅里叶变换红外(FTIR)光谱化学分析。还使用旋转流变仪评估每种成分对测试润滑剂的流变性质的影响。我们观察到蛋白质对摩擦和磨损过程产生了明确的影响;通过改变磨料的主要摩擦力和磨损机制来吸附在UHMWPE表面上的蛋白质和磨损增加和磨损。磷脂也在增加摩擦,而透明质酸通过增加润滑剂的粘度并提高流体动力学效果来降低摩擦力。然而,当磷脂和透明质酸与蛋白质混合时,它们增强了蛋白质分子夹带到接触面积中并增加了UHMWPE的磨损。

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