首页> 外文期刊>Journal of solid state electrochemistry >Electrochemical polarisation and galvanic couple behaviour of the primary phase of 55% Al-Zn coating investigated using band microelectrodes (BME) and band microelectrode arrays
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Electrochemical polarisation and galvanic couple behaviour of the primary phase of 55% Al-Zn coating investigated using band microelectrodes (BME) and band microelectrode arrays

机译:使用带状微电极(BME)和带状微电极阵列研究了55%Al-Zn涂层主相的电化学极化和电偶行为

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摘要

Electrochemical polarisation experiments have shown that anodic dissolution processes on Al-40% Zn alloys are significantly enhanced in chloride compared to sulfate-based electrolytes. The aluminium content of the alloys allowed passive behaviour to be observed in sulfate electrolyte even in the presence of zinc-rich precipitates on the surface. Electrolyte pH affected cathodic processes, which was attributed to the rate of proton reduction and the passivity of the surface. Monitoring the OCP of the alloy band during polarisation of neighbouring zinc electrodes in band microelectrode (BME) arrays showed that generation of alkaline pH at the zinc electrodes affected the OCP of the alloy when the inter-electrode spacing was 10, 50, and 200 mu m. Where elements of a BME array were close enough to interact via mass transport, the overall galvanic behaviour of the cell was found to be anodic or cathodic, whereas the alloy was consistently cathodic with respect to zinc in galvanic cells at larger separations.
机译:电化学极化实验表明,与基于硫酸盐的电解质相比,在Al-40%Zn合金中的阳极溶解过程在氯化物中显着增强。合金中的铝含量使得即使在表面上存在富锌沉淀物的情况下,也可以在硫酸盐电解质中观察到钝化行​​为。电解质的pH值影响阴极的过程,这归因于质子的还原速率和表面的钝化率。在带状微电极(BME)阵列中,在相邻锌电极极化过程中监测合金带的OCP,发现当电极间距为10、50和200μm时,锌电极上碱性pH的生成会影响合金的OCP。米在BME阵列的元素足够接近以通过质量传递相互作用的情况下,发现该电池的整体电化学行为是阳极或阴极,而在较大分离度下,该合金相对于原电池中的锌始终是阴极。

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