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首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >Wear mapping of CoCrMo alloy in simulated bio-tribocorrosion conditions of a hip prosthesis bearing in calf serum solution
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Wear mapping of CoCrMo alloy in simulated bio-tribocorrosion conditions of a hip prosthesis bearing in calf serum solution

机译:在小腿血清溶液中模拟髋关节假体的生物摩擦腐蚀条件下,CoCrMo合金的磨损图

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摘要

Wear maps were developed following a series of micro-abrasion-corrosion testing during idealised hip contact conditions for a CoCrMo alloy in a foetal calf serum solution. The main aim of the study was to characterise wear-corrosion or bio-tribocorrosion regimes of the alloy over a range of applied loads and applied potentials. The transitioning micro-abrasion-corrosion mechanisms, synergisms and wastage behaviours in the presence of additional abrasive particles were identified and mapped. Wear maps in earlier work show the wear-corrosion transitions of CoCrMo alloy in the absence of abrasive particles for similar conditions; the wear maps developed in this work were compared. Mapping the micro-abrasion-corrosion regimes indicated that proteins present in foetal calf serum solution, resulting in development of a graphitic tribo-layer, may play a critical role in enhancing or protecting against tribo-corrosive degradation. (C) 2015 Published by Elsevier B.V.
机译:在胎牛血清溶液中CoCrMo合金在理想的髋部接触条件下进行一系列微磨损腐蚀测试之后,开发了磨损图。这项研究的主要目的是在一系列施加的载荷和施加的电势下表征合金的磨损腐蚀或生物摩擦腐蚀状况。在存在额外的磨料颗粒的情况下,对过渡的微磨蚀腐蚀机理,协同作用和浪费行为进行了识别和制图。早期工作中的磨损图显示,在类似条件下,在没有磨料颗粒的情况下,CoCrMo合金的磨损-腐蚀转变;比较了这项工作中开发的磨损图。绘制微磨损腐蚀机制的图谱表明,胎牛血清溶液中存在的蛋白质会导致石墨摩擦层的形成,可能在增强或防止摩擦腐蚀降解中起关键作用。 (C)2015由Elsevier B.V.发布

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