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[1]徐振邦,陆振涛,柯喜敏,等.铝合金电子元器件的表面涂层与耐蚀性能研究[J].电镀与精饰,2019,(10):9-12.[doi:10.3969/j.issn.1001-3849.2019.10.003]
 XU Zhenbang,LU Zhentao,KE Ximin,et al.Study on Surface Coating and Corrosion Resistance of Aluminum Alloy Electronic Components[J].Plating & Finishing,2019,(10):9-12.[doi:10.3969/j.issn.1001-3849.2019.10.003]
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铝合金电子元器件的表面涂层与耐蚀性能研究

参考文献/References:

[1] Li Q B, Liang J, Liu B X. Effects of cathodic voltages on structure and wear resistance of plasma electrolytic oxidation coatings formed on aluminium alloy[J]. Applied Surface Science, 2014, 297(4): 176-181.
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[3] 温世峰, 陈霞, 刘军. 氧化时间对2024铝合金表面微弧氧化涂层组织与耐蚀性的影响[J]. 热加工工艺, 2016, 45(14): 139- 143.
[4] 项南, 宋仁国, 赵坚. 6063铝合金微弧氧化陶瓷涂层的显微组织和力学性能[J]. 中国有色金属学报, 2015, 25(10): 3323- 3328.
[5] 孙国元, 刘超锋, 杨莉. 变形铝合金在不同电解液中微弧氧化涂层的性能[J]. 铸造技术, 2009, 30(6): 773-775.
[6] Yang Y, Liu Y H. Effects of current density on the microstructure and the corrosion resistance of alumina coatings embedded with SiC nano-particles produced by micro-arc oxidation[J]. Journal of Materials Science and Technology, 2010, 289(26): 1016-1020.
[7] 王艳秋, 王岳, 陈派明. 7075铝合金微弧氧化涂层的组织结构与耐蚀耐磨性能[J]. 金属学报, 2011, 47(4):455-461.

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备注/Memo

收稿日期: 2018-08-04;修回日期: 2019-04-07

更新日期/Last Update: 2019-10-10