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Tribological performance of ultra-high-molecular-weight polyethylene sliding against DLC-coated and nitrogen ion implanted CoCrMo alloy measured in a hip joint simulator

机译:在髋关节模拟器中测量的超高分子量聚乙烯对DLC涂层和氮离子注入的CoCrMo合金滑动的摩擦学性能

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摘要

The influence on the tribological properties in a modified metal-on-polymer (CoCrMo/UHMWPE) articulation should be tested with DLC coated or N ~+ ion implanted into artificial hip joint heads. For this a diamond like carbon (DLC) film was deposited on a CoCrMo artificial hip joint head by filtered cathodic vacuum arc technique (FCVA) with a thickness of approximately 600nm. Alternatively nitrogen ions were implanted into the CoCrMo artificial hip joint head by plasma immersion ion implantation (PIII) technology. Before wear tests, the surface morphology and topography of unmodified, DLC coated and N ~+ implanted CoCrMo heads were investigated by optical microscopy (OM) and stylus profilometry. Then a MTS hip joint simulator was used to characterize the tribological properties of the artificial hip joint implants. The wear loss of UHMWPE cup and wear morphology of both the CoCrMo head and UHMWPE cup were investigated after hip joint simulator wear tests. The results showed that the DLC film deposited on the CoCrMo joint head by FCVA method had excellent tribological properties and didn't fail during two million wear cycles while the N ~+ implanted layer formed on the CoCrMo head was damaged during the wear test. Compared with sliding against unmodified CoCrMo head, the UHMWPE cup had a higher wear rate when sliding against DLC coated or N ~+ implanted CoCrMo head. In our opinion, only applying the surface modification (DLC film or N ~+ implantation) on the CoCrMo head could not improve the wear resistance of metal-on-polymer (CoCrMo/UHMWPE) articulation for artificial hip joint implant.
机译:应使用DLC涂层或N〜+离子植入人工髋关节头部来测试改性聚合物对金属(CoCrMo / UHMWPE)铰接中的摩擦学性能的影响。为此,通过过滤阴极真空电弧技术(FCVA)将类金刚石碳(DLC)膜沉积在CoCrMo人工髋关节头上,其厚度约为600nm。或者,通过等离子浸入离子注入(PIII)技术将氮离子注入CoCrMo人工髋关节头。在进行磨损测试之前,通过光学显微镜(OM)和测针轮廓测量法研究了未改性,DLC涂层和N〜+植入的CoCrMo磁头的表面形态和形貌。然后使用MTS髋关节模拟器来表征人工髋关节植入物的摩擦学特性。在髋关节模拟器磨损测试后,研究了UHMWPE杯的磨损损失以及CoCrMo头部和UHMWPE杯的磨损形态。结果表明,通过FCVA方法沉积在CoCrMo接头头上的DLC膜具有优异的摩擦学性能,在200万次磨损循环中不会失效,而在CoCrMo接头上形成的N〜+注入层在磨损试验中被破坏。与未修饰的CoCrMo磁头滑动相比,UHMWPE杯在DLC涂层或N〜+植入的CoCrMo磁头滑动时具有更高的磨损率。我们认为,仅在CoCrMo头上进行表面改性(DLC膜或N〜+植入)不能改善用于人工髋关节植入物的聚合物基金属(CoCrMo / UHMWPE)关节的耐磨性。

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