双金属偶联7075 - T6 -铝合金/微合金双相钢的电偶腐蚀评价

Vianey Torres, R. Mayén‐Mondragón, Juan Genesca
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摘要

研究了7075 - T6 -铝合金和低碳-低锰微合金双相钢在3% NaCl水溶液中的腐蚀行为。单个材料的腐蚀行为通过对单个耦合组件进行的动电位极化和电化学阻抗谱测量来评估。单个样品的腐蚀速率在微合金钢上比在铝合金上大7倍。从腐蚀电流密度的比较中,发现电偶维持了不显著的电效应——后者与考虑其各自腐蚀电位差异而确定的效应形成对比。根据应用混合电位理论和直接对电偶进行的零电阻电流表测量,铝合金作为电偶的阳极成员。考虑到氧还原反应在微合金钢表面的有利速率,这种行为是由动力学参数而不是热力学参数来证明的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Assessment of the galvanic corrosion of bi‐metallic couple 7075‐T6‐aluminum alloy/microalloyed dual‐phase steel
The corrosion behavior of a galvanic coupling consisting of a 7075‐T6‐aluminum alloy and a low‐carbon low‐manganese microalloyed dual‐phase steel was studied in a 3% NaCl aqueous solution at room temperature. Corrosion behavior of the individual materials was assessed from potentiodynamic polarization and electrochemical impedance spectroscopy measurements conducted on the individual couple components. The corrosion rate of the individual samples was found to be seven times larger on the microalloyed steel than on the aluminum alloy. From a comparison of corrosion current densities, the galvanic couple was found to sustain a nonsignificant galvanic effect—the latter in contrast to what may be determined considering differences in their respective corrosion potentials. According to the applied mixed‐potential theory and the zero‐resistance‐ammeter measurements performed directly on the galvanic couple, the aluminum‐alloy acted as the anodic member of the galvanic couple. Such behavior was justified by kinetic parameters rather than thermodynamic ones, considering the favorable rate of the oxygen reduction reaction on the microalloyed steel surface.
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