An ionic liquid-assisted strategy for enhanced anticorrosion of low-energy PEO coatings on magnesium–lithium alloy

被引:0
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作者
You Zhang [1 ]
Chuping Chen [1 ]
Haoyue Tian [1 ]
Shuqi Wang [2 ]
Chen Wen [3 ]
Fei Chen [1 ]
机构
[1] College of New Materials and Chemical Engineering, Hydrogen Energy Research Centre, Beijing Institute of Petrochemical Technology
[2] Key Laboratory of Advanced Structure-Function Integrated Materials and Green Manufacturing Technology, Harbin Institute of Technology
[3] Beijing Spacecrafts, China Academy of Space
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中图分类号
TG174.4 [金属表面防护技术];
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摘要
A low-energy plasma electrolytic oxidation (Le PEO) technique is developed to simultaneously improve energy efficiency and anti-corrosion Ionic liquids (1–butyl–3-methylimidazole tetrafluoroborate (BmimBF4)) as sustainable corrosion inhibitors are chosen to investigate the corrosion inhibition behavior of ionic liquid (ILs) during the LePEO process for LA91 magnesium–lithium (Mg–Li) alloy.Results show that the ionic liquid BmimBF4participates in the Le PEO coating formation process,causing an increment in coating thickness and surface roughness.The low conductivity of the ionic liquid is responsible for the voltage and breakdown voltage increases during the Le PEO with IL process (LePEO-IL).After adding BmimBF4,corrosion current density decreases from 1.159×10-4A·cm-2to 8.143×10-6A·cm-2The impedance modulus increases to 1.048×10~4Ω·cm-2and neutral salt spray remains intact for 24 h.The superior corrosion resistance of the Le PEO coating assisted by ionic liquid could be mainly attributed to its compact and thick barrier layer and physical absorption of ionic liquid.The ionic liquid-assisted Le PEO technique provides a promising approach to reducing energy consumption and improving film performance.
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页码:2380 / 2396
页数:17
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