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Effects of copper additive on micro-arc oxidation coating of LZ91 magnesium-lithium alloy

机译:铜添加剂对LZ91镁锂合金微弧氧化膜的影响

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The improvement in corrosion resistance for magnesium-lithium alloys in an aggressive environment is an important issue for their widespread application. In this research, the different colors of ceramic coatings are developed by micro-arc oxidation technology in order to protect the surfaces of LZ91 magnesium-lithium alloy using electrolytes containing different concentrations of copper compound. The MAO coatings are compared based on their thicknesses, porosities, surface compositions and corrosion performances. The surface morphology, cross-section and chemical compositions of phosphate coatings were investigated via scanning electron microscopy (SEM) accompanied by energy-dispersive X-rays. The corrosion performance and porosity of the coatings were evaluated by electrochemical characterization which was performed in a 3.5% NaCl solution at 25 degrees C The findings showed that the color of the coating fabricated by the MAO process, with the addition of 3% and 5% Cu in the base electrolyte, changed from brown to dark brown. The coating thickness increased and became more porous with increasing concentrations of copper ions in the base electrolyte. The corrosion resistance of the LZ91 alloy was significantly improved after being treated with the micro-arc oxidation process. (C) 2016 Elsevier B.V. All rights reserved.
机译:镁锂合金在腐蚀性环境中的耐腐蚀性的提高是其广泛应用的重要问题。在这项研究中,通过微弧氧化技术开发出了不同颜色的陶瓷涂层,以使用含有不同浓度铜化合物的电解质保护LZ91镁锂合金的表面。根据其厚度,孔隙率,表面成分和腐蚀性能对MAO涂层进行比较。通过扫描电子显微镜(SEM)伴随能量色散X射线研究了磷酸盐涂层的表面形态,截面和化学成分。通过在25%C的3.5%NaCl溶液中进行电化学表征来评估涂层的腐蚀性能和孔隙率。研究结果表明,通过添加3%和5%的MAO工艺制造的涂层颜色基础电解液中的Cu从棕色变为深棕色。随着基础电解质中铜离子浓度的增加,涂层厚度增加并变得更加多孔。经过微弧氧化处理后,LZ91合金的耐蚀性得到了显着提高。 (C)2016 Elsevier B.V.保留所有权利。

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