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Improvement of corrosion properties of microarc oxidation coating on magnesium alloy by optimizing current density parameters

机译:优化电流密度参数改善镁合金微弧氧化膜层的腐蚀性能

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摘要

The microstructure, composition and corrosion performance of oxide coatings formed on AM60B alloy using microarc oxidation techniques at different waveforms of applied current densities were investigated within this study. It is found that the use of optimizing current density waveforms, i.e. decaying freely current density in the later stage and stepped decreasing current density, significantly improved the microstructure of oxide coatings compared with the constant current density mode, which are connected with changes in behaviors of spark discharges on the surface in oxidation process. The optimal waveform of current density is showed to be decaying freely current density in the later stage, which results in sealing the originally formed large micropores. The optimisation of the microstructure results in a significant improvement of the corrosion resistance of oxide coating.
机译:在本研究中,研究了使用微弧氧化技术在AM60B合金上形成的氧化物涂层在不同电流密度下的显微组织,组成和腐蚀性能。研究发现,与恒定电流密度模式相比,使用最佳电流密度波形,即在后期自由衰减电流密度和逐步减小电流密度,显着改善了氧化物涂层的微观结构。在氧化过程中,火花在表面放电。电流密度的最佳波形显示为在稍后阶段自由衰减的电流密度,这导致密封最初形成的大微孔。微观结构的优化可显着提高氧化物涂层的耐腐蚀性。

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