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Electrochemical investigation of corrosion and repassivation of structural aluminum alloys under permanent load in bending

机译:永久性弯曲载荷下结构铝合金腐蚀和再钝化的电化学研究

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摘要

This work reports an electrochemical investigation of corrosion and repassivation in NaCl solutions of structural Al 7075-T6 and Al 2024-T3 as a function of permanent load in bending by means of single-cycle anodic polarization. Experimental variables other than the load level were the extent of corrosion, chloride ion concentration and initial pH of the test solution, in addition to the pre-exposure in the aggressive environment and of the viscosity of the test solution for Al 7075-T6. The susceptibility to local stress during corrosion and repassivation depends on the alloy microstructure and corrosion mechanisms. In the case of Al 2024-T3, the mechanical activation is driven by cathodically controlled dissolution of this alloy at open circuit in concentrated NaCl, being indicative of a chemomechanical effect. Conversely, for Al 7075-T6, the effect of applied load is better discerned from the repassivation response. Film rupture/formation sequence and related interfacial (electro)chemical processes determine the stress-enhanced metastable repassivation of this alloy.
机译:这项工作报告了电化学研究,研究了结构Al 7075-T6和Al 2024-T3的NaCl溶液在NaCl溶液中的腐蚀和再钝化,它是通过单周期阳极极化弯曲时的永久载荷的函数。除负荷水平外的实验变量是腐蚀程度,测试溶液的氯离子浓度和初始pH值,以及在腐蚀性环境中的预暴露以及Al 7075-T6测试溶液的粘度。在腐蚀和再钝化过程中对局部应力的敏感性取决于合金的显微组织和腐蚀机理。在Al 2024-T3的情况下,机械活化是由该合金在浓NaCl的开路中阴极控制的溶解来驱动的,这表明了化学机械作用。相反,对于Al 7075-T6,从再钝化响应中可以更好地识别施加载荷的效果。膜破裂/形成顺序和相关的界面(电)化学过程决定了该合金的应力增强的亚稳态再钝化。

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