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Effects of Surface Modification and Bulk Geometry on the Biotribological Behavior of Cross-Linked Polyethylene: Wear Testing and Finite Element Analysis

机译:表面改性和本体几何形状对交联聚乙烯生物摩擦学行为的影响:磨损测试和有限元分析

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摘要

The wear and creep deformation resistances of polymeric orthopedic bearing materials are both important for extending their longevity. In this study, we evaluated the wear and creep deformation resistances, including backside damage, of different polyethylene (PE) materials, namely, conventional PE, cross-linked PE (CLPE), and poly(2-methacryloyloxyethyl phosphorylcholine)- (PMPC-) grafted CLPE, through wear tests and finite element analysis. The gravimetric and volumetric degrees of wear of disks (3 or 6 mm in thickness) of these materials against a cobalt-chromium-molybdenum alloy pin were examined using a multidirectional pin-on-disk tester. Cross-linking and PMPC grafting decreased the gravimetric wear of the PE disks significantly. The volumetric wear at the bearing surface and the volumetric penetration in the backside of the 3-mm thick PE disk were higher than those of the 6-mm thick PE disk, regardless of the bearing material. The geometrical changes induced in the PE disks consisted of creep, because the calculated internal von Mises stress at the bearing side of all disks and that at the backside of the 3-mm thick disks exceeded their actual yield strengths. A highly hydrated bearing surface layer, formed by PMPC grafting, and a cross-linking-strengthened substrate of adequate thickness are essential for increasing the wear and creep deformation resistances.
机译:聚合物整形外科轴承材料的耐磨性和抗蠕变变形性对于延长其使用寿命都很重要。在这项研究中,我们评估了不同聚乙烯(PE)材料(即传统PE,交联PE(CLPE)和聚(2-甲基丙烯酰氧基乙基磷酰胆碱)-(PMPC- )通过磨损测试和有限元分析嫁接了CLPE。使用多向针盘式测试仪检查了这些材料相对于钴铬钼合金针盘的重量(体积为3或6?mm)的重量和体积磨损程度。交联和PMPC接枝显着降低了PE圆盘的重量磨损。不论轴承材料如何,3毫米厚PE盘的轴承表面的体积磨损和背面的体积穿透力均比6毫米厚PE盘的磨损大。 PE盘中引起的几何变化包括蠕变,因为在所有盘的轴承侧和3毫米厚的盘的背面计算的内部von Mises应力超过了其实际屈服强度。通过PMPC接枝形成的高度水合的轴承表面层以及足够厚度的交联强化基材对于提高耐磨性和抗蠕变变形性至关重要。

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