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镁合金表面耐蚀改性技术
引用本文:韦春贝,张春霞,田修波,杨士勤,Ricky Fu,Paul K.Chu.镁合金表面耐蚀改性技术[J].轻合金加工技术,2004,32(6):6-11.
作者姓名:韦春贝  张春霞  田修波  杨士勤  Ricky Fu  Paul K.Chu
作者单位:1. 哈尔滨工业大学,现代焊接技术国家重点实验室,黑龙江,哈尔滨,150001
2. 大庆市风华建筑安装有限公司,黑龙江,大庆,163413
3. 香港城市大学,物理及材料科学系,香港,九龙
基金项目:国家自然科学基金资助(10345003,50373007)
摘    要:镁及镁合金是一种极具发展潜力的轻质结构材料,但镁合金的耐蚀性较差,因此进行适当的表面处理以提高镁合金的耐蚀性能已成为目前研究的热点。微弧氧化、激光表面处理、离子注入、物理气相沉积(PVD)及等离子体注入沉积(IBAD)是近年来兴起的镁合金表面耐蚀强化新技术,这几种技术在处理镁合金耐蚀性方面已取得了一定的成果。综述了目前国内外应用这几种方法提高镁合金耐蚀性方面的研究现状,并展望了其应用前景。

关 键 词:镁合金  耐蚀性  表面处理
文章编号:1007-7235(2004)06-0006-06

Surface Modification Techniques to Improve Corrosion-Resistance of Magnesium Alloys
WEI Chun-bei,ZHANG Chun-xia,TIAN Xiu-bo,YANG Shi-qin,Fu Ricky,Chu K.Paulratory,Harbin Institute of Technology,Harbin ,China,.Daqing Fenghua Construction & Installation Limitted company,Daqing ,China.Surface Modification Techniques to Improve Corrosion-Resistance of Magnesium Alloys[J].Light Alloy Fabrication Technology,2004,32(6):6-11.
Authors:WEI Chun-bei  ZHANG Chun-xia  TIAN Xiu-bo  YANG Shi-qin  Fu Ricky  Chu KPaulratory  Harbin Institute of Technology  Harbin  China  Daqing Fenghua Construction & Installation Limitted company  Daqing  China
Affiliation:WEI Chun-bei~1,ZHANG Chun-xia~2,TIAN Xiu-bo~1,YANG Shi-qin~1,Fu Ricky~3,Chu K.Paul~3ratory,Harbin Institute of Technology,Harbin 150001,China,2.Daqing Fenghua Construction & Installation Limitted company,Daqing 163413,China,3.Department of Physics and Materials Science,City University of Hong Kong,Kowloon,China)
Abstract:Magnesium and its alloys are promising structural materials because of their lightweight. However the wide application of magnesium alloys is limited due to inferior corrosion resistance. So proper surface modification to improve the corrosion resistance of magnesium alloys is of great importance. Microarc oxidation, laser treatment, ion implantation, physics vapor deposition(PVD) and ion beam assistant deposition(IBAD), etc, have prove to be effective for corrosion-resistance improvement of magnesium alloys. The paper presents the state and prospect of these techniques.
Keywords:magnesium alloys  corrosion resistance  surface modification
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