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In-situ Generated Tribomaterial in Metal/Metal Contacts: current understanding and future implications for implants

机译:金属/金属接触中的原位产生摩擦材料:植入物的当前理解和未来含义

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摘要

Artificial hip joints operate in aqueous biofluids that are highly reactive towards metallic surfaces. The reactivity at the metal interface is enhanced by mechanical interaction due to friction, which can change the near-surface structure of the metal and surface chemistry. There are now several reports in the literature about the in-situ generation of reaction films and tribo-metallurgical transformations on metal-on-metal hip joints. This paper summarizes current knowledge and provides a mechanistic interpretation of the surface chemical and metallurgical phenomena. Basic concepts of corrosion and wear are illustrated and used to interpret available literature on in-vitro and in-vivo studies of metal-on-metal hip joints. Based on this review, three forms of tribomaterial, characterized by different combinations of oxide films and organic layers, can be determined. It is shown that the generation of these tribofilms can be related to specific electrochemical and mechanical phenomena in the metal interface. It is suggested that the generation of this surface reaction layer constitutes a way to minimize (mechanical) wear of MoM hip implants.
机译:人工髋关节在对金属表面具有高反应性的水性生物流体中工作。金属界面的反应性由于摩擦而引起的机械相互作用得以增强,这可以改变金属的近表面结构和表面化学性质。现在,在文献中有一些关于在金属对金属髋关节上原位产生反应膜和摩擦冶金转变的报道。本文总结了当前的知识,并提供了对表面化学和冶金现象的机械解释。说明了腐蚀和磨损的基本概念,并用于解释有关金属对金属髋关节的体外和体内研究的现有文献。基于此综述,可以确定三种形式的摩擦材料,其特征在于氧化膜和有机层的不同组合。结果表明,这些摩擦膜的产生可能与金属界面中特定的电化学和机械现象有关。建议该表面反应层的产生构成最小化MoM髋植入物(机械)磨损的方法。

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