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Studies on the influence of chloride ion concentration and pH on the corrosion and electrochemical behaviour of AZ63 magnesium alloy

机译:氯离子浓度和pH值对AZ63镁合金腐蚀和电化学行为的影响研究

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Magnesium-based light alloys belong to a class of structural materials with increasing industrial attention. Magnesium alloys show the lowest density among the engineering metallic materials, low cost and large availability. As a consequence, this light alloys have a promising future. The paper presented reveals the influence of chloride ion concentration and pH on the corrosion and electrochemical behavior of AZ63 magnesium alloy in NaCl solution. The experimental techniques used include immersion studies and potentiodynamic polarization tests. The corrosion rate was very high in highly acidic solutions (pH 2) as compared to that in other solutions. The corrosion rate usually increased with the decrease in pH and the increase in chloride ion concentration. But the quantity of the increase in corrosion rate was different at separate pH and concentration regions. The corrosion potential usually shifted to more negative values with the increase in concentration of chloride ions and the decrease in pH of solution.
机译:镁基轻合金属于一类结构材料,受到了越来越多的工业关注。镁合金在工程金属材料中显示出最低的密度,低成本和高可用性。因此,这种轻质合金具有广阔的前景。该论文揭示了氯离子浓度和pH值对AZ63镁合金在NaCl溶液中的腐蚀和电化学行为的影响。所使用的实验技术包括浸没研究和电位动力学极化测试。与其他溶液相比,在高酸性溶液(pH 2)中的腐蚀速率非常高。腐蚀速率通常随着pH的降低和氯离子浓度的增加而增加。但是在不同的pH和浓度区域,腐蚀速率的增加量是不同的。随着氯离子浓度的增加和溶液pH值的降低,腐蚀电位通常会移至更负的值。

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