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A Crevice Corrosion Model for Biomedical Trunnion Geometries and Surfaces Feature

机译:生物医学耳轴几何形状和表面特征的缝隙腐蚀模型

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摘要

Modular hip joint implants were introduced in arthroplasty medical procedures because they facilitate the tailoring of patients’ anatomy, the use of different materials in one single configuration, as well as medical revision. However, in certain cases, such prostheses may undergo deterioration at the head–neck junctions with negative clinical consequences. Crevice-corrosion is commonly invoked as one of the degradation mechanisms acting at those junctions despite biomedical alloys such as Ti6Al4V and CoCr being considered generally resistant to this form of corrosion. To verify the occurrence of crevice corrosion in modular hip joint junctions, laboratory crevice-corrosion tests were conducted in this work under hip joint-relevant conditions, i.e., using similar convergent crevice geometries, materials (Ti6Al4V and CoCr alloys vs. ceramic), surface finish, NaCl solution pHs (5.6 and 2.3), and electrochemical conditions. A theoretical model was also developed to describe crevice-corrosion considering relevant geometrical and electrochemical parameters. To verify the model, a FeCr alloy, known to be sensitive to this phenomenon, was subjected to the crevice-corrosion test in sulfuric acid. The experiments and the model predictions clearly showed that, in principle, crevice corrosion of Ti6Al4V or CoCr is not supposed to occur in typical crevices formed at the stem-neck junction of hip implants.
机译:模块化髋关节植入物置换的医疗过程进行了介绍,因为它们有利于患者的解剖结构的剪裁,在一个单一的配置中使用不同的材料,以及医疗修订。然而,在某些情况下,这种假体可以在负的临床后果的头颈连接处发生恶化。缝隙腐蚀通常援引为在生物医学尽管合金如Ti6Al4V合金和钴铬那些结起作用的降解机制中的一个被认为是通常于这种形式的耐腐蚀。为了验证在模块化髋关节结缝隙腐蚀的发生,实验室缝隙腐蚀试验是在这项工作中的髋关节相关的条件下,即下进行的,使用类似的会聚缝隙几何形状,材料(Ti6Al4V合金和钴铬合金与陶瓷),表面光洁度,NaCl溶液的pH(5.6和2.3),和电化学条件。理论模型也被开发用来描述缝隙腐蚀考虑相关的几何和电化学参数。为了验证该模型,一个铬铁合金,已知对这种现象敏感,进行在硫酸中的裂隙腐蚀试验。实验和模型预测清楚地表明,在原则上,或Ti6Al4V合金钴铬的缝隙腐蚀是不应该在髋关节植入物的干管颈交界处形成典型的裂缝发生。

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