Atmospheric corrosion acceleration effect on commercial aluminum alloys in current-carrying condition

腐蚀 冶金 材料科学 合金 极化(电化学) 微观结构 卤化 化学 物理化学
作者
Yan Gao,Qiubo Li,Wei Wu,Qiwei Wang,Yizhe Su,Junxi Zhang,Deyuan Lin,Xiaojian Xia
出处
期刊:Anti-corrosion Methods and Materials [Emerald (MCB UP)]
标识
DOI:10.1108/acmm-06-2023-2818
摘要

Purpose The purpose of this paper is to study the effect of current-carrying condition on the electrochemical process and atmospheric corrosion behavior of the commercial aluminum alloys. Design/methodology/approach Potentiodynamic polarization tests were performed to study the electrochemical process of the aluminum alloys. Salt spray tests and weight loss tests were carried out to study the atmospheric corrosion behavior. The corrosion morphology of the alloys was observed, and the products were analyzed. Findings The corrosion process of four aluminum alloys was accelerated in the current-carrying condition. Moreover, the acceleration effect on A2024 and A7075 was much stronger than that on A1050 and A5052. The main factors would be the differences in microstructure and corrosion resistance between these alloys. As the carried current increased, the corrosion rate and corrosion current density of the aluminum alloys gradually increased, with the protection of the corrosion product film decreasing linearly. Originality/value This is a recent study on the corrosion behavior of conductors under current-carrying condition, which truly understands the corrosion status of power grid materials. Relevant results provide support for the corrosion protection and safe service of aluminum alloy in power systems.
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