Abstract
Micro-arc oxidation (MAO) coatings on magnesium-lithium alloys were performed in an alkalinesilicate electrolyte using pulsed unipolar and bipolar current regimes to improve the corrosion resistance. The effects of a negative duty cycle of a pulsed bipolar current on the coating performance were studied at 10%, 20% and 30%. The surface morphology, element composition and phase composition of MAO coatings were examined by SEM, EDS and XRD, respectively. The corrosion resistance and porosity of the coatings were studied by potentiodynamic polarization which was performed in 3.5% NaCl solution at 25°C. The effects of the negative duty cycle on the MAO coating process and the resulting coating characteristics were discussed. Applying the pulsed bipolar current was found to promote a thinner compact coating. The corrosion resistance of the magnesium-lithium alloy was significantly improved after treatment with pulsed unipolar and bipolar current regimes. The results show that applying a 20% negative duty cycle in a pulsed bipolar current regime produces better corrosion resistance than 10% and 30% MAO coated samples.
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Lee, S. J., Do, L. H. T., Lee, J. L., Chen, C. Y., & Peng, H. C. (2018). Effects of pulsed unipolar and bipolar current regimes on the characteristics of micro-arc oxidation coating on LZ91 magnesium-lithium alloy. International Journal of Electrochemical Science, 13(3), 2705–2717. https://doi.org/10.20964/2018.03.42
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