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Electrochemical characterization of cobalt-based alloys using the mini-cell system

机译:微型电池系统对钴基合金的电化学表征

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Objectives. The aim of this work was to investigate the electrochemical behavior of cobalt-based alloys of different compositions using the mini-cell system (MCS) and to test the sensitivity of this technique in the detection of variations in the electrochemical behavior caused by the different compositions of cobalt-based alloys. Methods. The electrochemical measurements were performed on two cobalt-based alloys, having a small content of gold (Barlight and Gold Core); one cobalt-platinum-ruthenium alloy (Porta Smart) and one classical Co-based alloy (Wironit), in two different electrolytes, 1% NaCl and phosphate buffered solution (PBS). Results. Based on I versus E curves, enhanced pitting corrosion capability was observed for the cobalt-based alloys, especially for those with lower chromium content and with the addition of a small amount of gold. The alloying of Co with Pt and Ru (Porta Smart), and the standard Co-based alloy do not show any critical instability; in contrast, a small addition of Au enhanced the pitting corrosion activity and reduced the corrosion stability. For higher alloy stability, a minimum 30% atomic ratio of chromium in the alloy composition is necessary. Furthermore, it was shown that MCS has sensitivity for the qualitative comparison of the alloys as well as in the electrochemical characterization of each alloy. Significance. Electrochemical measurements are essential to assess the quality of an alloy. MCS might help in understanding the role the elements play in the electrochemical behavior of the alloys and at the same time contribute to the selection of the alloys in terms of their quality, even before more complex tests in vitro or in vivo are applied, and might reduce the costs for materials research.
机译:目标。这项工作的目的是使用微型电池系统(MCS)研究不同成分的钴基合金的电化学行为,并测试该技术在检测由不同成分引起的电化学行为变化中的敏感性钴基合金。方法。电化学测量是在两种钴基合金中进行的,这些合金的金含量很少(Barlight和Gold Core);一种在两种不同的电解质,1%NaCl和磷酸盐缓冲液(PBS)中的钴铂钌合金(Porta Smart)和一种经典的钴基合金(Wironit)。结果。基于I对E曲线,观察到钴基合金的点蚀能力增强,尤其是那些铬含量较低且添加少量金的合金。 Co与Pt和Ru(Porta Smart)的合金以及标准的Co基合金没有显示出任何严重的不稳定性;相反,少量添加Au会增强点蚀活性并降低腐蚀稳定性。为了获得更高的合金稳定性,合金成分中铬的原子比必须至少达到30%。此外,已经表明,MCS对于合金的定性比较以及每种合金的电化学表征具有敏感性。意义。电化学测量对于评估合金质量至关重要。 MCS可能有助于理解元素在合金的电化学行为中的作用,同时甚至在进行更复杂的体外或体内测试之前,就其质量而言也有助于选择合金。降低材料研究成本。

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