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Electrochemical methods study on corrosion of 5% Al-Zn alloy-coated steel under thin electrolyte layers

机译:电解质薄层对5%Al-Zn合金涂层钢腐蚀的电化学方法研究

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摘要

The corrosion behavior of a 5% Al-Zn alloy (GF) coated steel was investigated under cyclic wet-dry condition using electrochemical techniques. The wet-dry cycle was conducted by exposure to alternate condition of 1 h immersion in seawater and 7 h drying at ambient temperature. The polarization resistance, Rp of the coating was monitored during the wet-dry cycles by two points AC impedance method and the corrosion potential, Ecorr was measured only when the coating was immersed in seawater. Simultaneously, the electrochemical impedance spectroscopy (EIS) of the coating was obtained after it was immersed in different cycles of wet-dry condition. The results obtained by two points AC impedance method had good agreement with those achieved from EIS technique, which proved that the two points AC impedance method was correct and an effective method for atmospheric corrosion study. The monitoring results indicated that the corrosion rate of GF coating firstly increased, then decreased slowly with time, and at last reached a relative steady state with local corrosion under the cyclic wet-dry alternate condition.
机译:使用电化学技术研究了5%Al-Zn合金(GF)涂层钢在循环干湿条件下的腐蚀行为。通过暴露于浸入海水中1小时和在环境温度下干燥7小时的交替条件进行湿-干循环。通过两点交流阻抗法在干湿循环中监测涂层的极化电阻Rp,仅当将涂层浸入海水中时才测量腐蚀电位Ecorr。同时,在将其浸入不同的干湿循环之后,获得了涂层的电化学阻抗谱(EIS)。两点交流阻抗法得到的结果与EIS技术相吻合,证明了两点交流阻抗法是正确的,是一种有效的大气腐蚀研究方法。监测结果表明,在循环湿干交替条件下,GF涂层的腐蚀速率先升高,然后随时间缓慢降低,最后达到相对稳定状态,局部腐蚀。

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