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The role of indium in the activation of aluminum alloy galvanic anodes

机译:铟在活化铝合金电阳极中的作用

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摘要

Despite six decades use of aluminum as a galvanic (sacrificial) anode, there remains a need for a better understanding of the underlying mechanisms for enhancing its efficient performance in cathodic protection systems. A few mechanisms have been proposed for the role of indium in the activation of Al-Zn-In anodes and there appears to be no general agreement on whether this element plays its depassivating role by modifying the bulk microstructure of the anode, chemical composition of its surrounding electrolyte or directly through doping the structure of the passive oxide film. These mechanisms have been critically reviewed to achieve a more comprehensive understanding of the role of indium in such applications. Moreover, the novel solidification processing called controlled diffusion solidification (CDS) has been introduced as an efficient way to surmount the poor castability of the anode alloy without any need for the addition of elements with detrimental effects on the electrochemical properties of the anode.
机译:尽管将铝用作电(牺牲)阳极已有六十年的历史,但仍需要更好地了解增强其在阴极保护系统中的有效性能的基本机制。已经提出了一些机制来研究铟在激活Al-Zn-In阳极中的作用,并且关于该元素是否通过改变阳极的整体微观结构,其化学成分而发挥去钝化作用似乎尚未达成共识。围绕电解质或直接通过掺杂钝化氧化膜的结构。对这些机制进行了严格审查,以更全面地了解铟在此类应用中的作用。此外,已经引入了称为受控扩散固化(CDS)的新型固化工艺,作为克服阳极合金不良铸造性能的有效方法,而无需添加对阳极电化学性能有不利影响的元素。

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