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Micro-abrasion–corrosion of a Co–Cr/UHMWPE couple in Ringer's solution : an approach to construction of mechanism and synergism maps for application to bio-implants

机译:林格氏溶液中Co-Cr / UHMWPE对的微磨损腐蚀:构建机理和协同作用图的方法,可应用于生物植入物

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摘要

In studies of tribo-corrosion, the degradation of bio-materials has become of increasing research interest in recent years. This is because, in many cases, the interactions of the tribological and corrosion component in biological environments are not well understood. Moreover, the wide range of variables involved in the tribo-corrosion process, and the variety of materials used in such conditions, means that there are few systematic studies where materials and operating conditions are optimized. In the total replacement of hip joints, the Co-Cr/UHMWPE couple has been used widely. However, the application of any replacement joint for biological conditions will depend on many factors including the activity of the patient and the overall load imposed on the artificial joint. This means evaluation of the tribo-corrosion behaviour over a multi parameter space is important in order to assess the degradation possible for many patient/activity and body mass categories.In this work, the performance of a Co-Cr/UHMWPE couple was evaluated in Ringer's solution in a tribological situation where micron size particles particles were entrained in the contact - micro-abrasion-corrosion. The effects of applied load and potential were investigated in the study. Micro-abrasion-corrosion maps were constructed for the material indicating the mechanism of degradation, the extent of wastage and of synergy/antagonism involved in the tribo-corrosion interaction.
机译:在摩擦腐蚀的研究中,近年来生物材料的降解已引起越来越多的研究兴趣。这是因为在许多情况下,人们对生物环境中的摩擦学成分和腐蚀成分之间的相互作用尚不甚了解。此外,摩擦腐蚀过程涉及的变量范围很广,并且在这种条件下使用的材料种类繁多,这意味着很少有系统的研究可以对材料和操作条件进行优化。在髋关节的整体置换中,Co-Cr / UHMWPE对已得到广泛使用。但是,将任何替换关节应用于生物学状况将取决于许多因素,包括患者的活动以及施加在人造关节上的总负荷。这意味着评估多参数空间上的摩擦腐蚀行为对于评估许多患者/活动和体重类别可能的降解至关重要。在这项工作中,对Co-Cr / UHMWPE夫妇的性能进行了评估。在摩擦状态下,微米级颗粒被夹带的摩擦状态下的林格氏溶液-微磨损腐蚀。在研究中研究了施加负荷和电位的影响。为该材料绘制了微磨损-腐蚀图,表明了摩擦-腐蚀相互作用中涉及的降解机理,损耗程度以及协同/拮抗作用。

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