首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Biotribological study of multilayer coated metal-on-metal hip prostheses in a hip joint simulator
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Biotribological study of multilayer coated metal-on-metal hip prostheses in a hip joint simulator

机译:髋关节模拟器中多层涂覆的金属对金属髋关节假体的生物摩擦学研究

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Metal-on-metal (MOM) hip joint bearings have demonstrated low wear rates and nowadays this contact pair has being considered as an alternative to metal-on-polymer (MOP) joint replacements. However, wear of MOM joints is a concern due to the toxicity and biological reaction of wear debris and metallic corrosion. This has motivated to investigate the possibility to apply thin hard coatings on metallic heads to reduce the wear and metallic ion release. The aim of the present study was to investigate the wear properties of metal-on-metal hip prostheses with surface engineered femoral heads using a multilayer coating (TiN/CrN) × 3, in comparison with metal-on-metal pairs in a hip joint simulator. Different surface PVD coatings were applied on surgical grade wrought cobalt-chromium alloy femoral heads: multilayer (TiN/CrN) × 3, CrN single layer and diamond-like carbon (DLC). These femoral heads were tested against high carbon content cast cobalt-chromium alloy acetabular cups using a three-axial multi-station hip joint simulator (FIME II). During the wear tests three directions of motion were applied with the following amplitudes: flexion-extension (FE) ± 23°, abduction-adduction (AA) ± 23° and internal-external (IER) ± 8°. All components were tested at 1.2 Hz under a Paul-type loading curve and bovine calf serum solution as lubricant. Results showed that both; the PVD coatings protects the femoral heads reducing wear up to 5 times in the case of the DLC coating and 28 and 55 times in the case of (TiN/CrN) × 3 and CrN respectively compared with the MOM femoral heads.
机译:金属对金属(MOM)髋关节轴承的磨损率低,如今,这种接触对已被视为替代金属对聚合物(MOP)关节的替代产品。但是,由于磨损碎片和金属腐蚀的毒性和生物反应,因此MOM接头的磨损是一个问题。这激发了研究在金属头上施加薄的硬涂层以减少磨损和金属离子释放的可能性。本研究的目的是与髋关节中的金属对金属对相比,研究使用多层涂层(TiN / CrN)×3进行表面工程化股骨头的金属对金属髋关节假体的磨损性能模拟器。在外科手术级锻钴铬合金股骨头上施加不同表面的PVD涂层:多层(TiN / CrN)×3,CrN单层和类金刚石碳(DLC)。使用三轴多站髋关节模拟器(FIME II)对这些股骨头进行高碳含量铸造钴铬合金髋臼杯测试。在磨损测试期间,三个运动方向的施加幅度如下:屈伸(FE)±23°,外展内收(AA)±23°和内外(IER)±8°。所有成分均在Paul型加载曲线下以1.2 Hz的频率进行测试,牛犊血清溶液作为润滑剂。结果表明两者; PVD涂层保护了股骨头,与MOM股骨头相比,DLC涂层的磨损减少了5倍,(TiN / CrN)×3和CrN分别减少了28倍和55倍。

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