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Effects of cupric ions on the corrosion behavior of aluminum alloy 5A02 in ethylene glycol-water solution
作者姓名:Shu-lun Gao  Mei Yu  Jian-hua Liu  Bing Xue  Song-mei Li
作者单位:School of Materials Science and Engineering, Beihang University, Beijing 100191, China
摘    要:The effects of cupric ions on the corrosion behavior of aluminum alloy 5A02 in ethylene glycol-water solutions were studied by potentiodynamic polarization, electrochemical noise (EN), and complementary techniques including scanning electron microscopy (SEM), atomic force microscopy (AFM), and X-ray photoelectron spectroscopy (XPS). A positive corrosion potential and increased corrosion current were observed due to the deposition of copper. The results demonstrate that the main corrosion type was pitting and the increasing cupric ion concentration augmented the pitting density. The pits became larger and deeper as a result of the embedment of copper into the surface of the alloy. Cupric ions were preferentially deposited at the defects around the secondary phase, leading to the formation of Al-Cu microgalvanic couples, which increased the corrosion rate. The corrosion rate gradually reached a stable value as the concentration of cupric ions was increased beyond 10 mmol/L.

关 键 词:aluminum  alloys    metal  corrosion    cupric  ions    ethylene  glycol    pitting

Effects of cupric ions on the corrosion behavior of aluminum alloy 5A02 in ethylene glycol–water solution
Shu-lun Gao,Mei Yu,Jian-hua Liu,Bing Xue,Song-mei Li.Effects of cupric ions on the corrosion behavior of aluminum alloy 5A02 in ethylene glycol-water solution[J].International Journal of Minerals,Metallurgy and Materials,2017,24(4):423-431.
Authors:Shu-lun Gao  Mei Yu  Jian-hua Liu  Bing Xue  Song-mei Li
Affiliation:1.School of Materials Science and Engineering,Beihang University,Beijing,China
Abstract:The effects of cupric ions on the corrosion behavior of aluminum alloy 5A02 in ethylene glycol–water solutions were studied by potentiodynamic polarization, electrochemical noise (EN), and complementary techniques including scanning electron microscopy (SEM), atomic force microscopy (AFM), and X-ray photoelectron spectroscopy (XPS). A positive corrosion potential and increased corrosion current were observed due to the deposition of copper. The results demonstrate that the main corrosion type was pitting and the increasing cupric ion concentration augmented the pitting density. The pits became larger and deeper as a result of the embedment of copper into the surface of the alloy. Cupric ions were preferentially deposited at the defects around the secondary phase, leading to the formation of Al–Cu microgalvanic couples, which increased the corrosion rate. The corrosion rate gradually reached a stable value as the concentration of cupric ions was increased beyond 10 mmol/L.
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