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Evaluation of metal cation effects on galvanic corrosion behavior of the A5052 aluminum alloy in low chloride ion containing solutions by electrochemical noise impedance

机译:通过电化学噪声阻抗评估金属阳离子对A5052铝合金在低氯离子溶液中的电偶腐蚀行为的影响

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摘要

The effects of metal cations on the galvanic corrosion behavior of the A5052 aluminum alloy in low chloride ion containing solutions (tap water) were examined by electrochemical noise impedance. The electrochemical noise impedance and conductance were calculated by the power spectral density (PSD) of the galvanic current and potential. The oscillations in the galvanic current correlate well with the oscillations in the potential. The total charge (summation of galvanic current) during galvanic corrosion tests was suppressed by the addition of Ca2+, while it was increased with Mg2+ addition. Only a small effect on mean impedance and conductance was observed in solutions with Cu2+ and Mg2+, while addition of Ca2+ strongly influences both the mean impedance and conductance. These results may be explained by the passive film structure changes due to the metal cations. The results obtained in this study indicate that metal cations play a very important role in the corrosion behavior of A5052 aluminum alloys in tap water.
机译:通过电化学噪声阻抗研究了金属阳离子对A5052铝合金在低氯离子溶液(自来水)中的电偶腐蚀行为的影响。通过电电流和电势的功率谱密度(PSD)计算电化学噪声的阻抗和电导。电流的振荡与电势的振荡很好地相关。通过添加Ca2 +可以抑制电腐蚀试验中的总电荷(电流总和),而通过添加Mg2 +可以增加总电荷。在含Cu2 +和Mg2 +的溶液中,仅观察到对平均阻抗和电导的很小影响,而添加Ca2 +强烈影响平均阻抗和电导。这些结果可以通过由于金属阳离子引起的钝化膜结构变化来解释。这项研究获得的结果表明,金属阳离子在A5052铝合金在自来水中的腐蚀行为中起着非常重要的作用。

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