铝合金表面用化学刻蚀和阳极氧化法制备的超疏水膜层的耐蚀性能(英文)
Corrosion Resistance of Superhydrophobic Film on Aluminum Alloy Surface Fabricated by Chemical Etching and Anodization
作者单位
李松梅 北京航空航天大学材料科学与工程学院空天材料与服役教育部重点实验室北京 100191 
李 彬 北京航空航天大学材料科学与工程学院空天材料与服役教育部重点实验室北京 100191 
刘建华 北京航空航天大学材料科学与工程学院空天材料与服役教育部重点实验室北京 100191 
于 美 北京航空航天大学材料科学与工程学院空天材料与服役教育部重点实验室北京 100191 
摘要: 通过化学刻蚀和阳极氧化在AA2024铝合金表面制备超疏水表面。当化学刻蚀时间超过3 min时,表面在很宽pH值范围内显示出水静态接触角大于150°。SEM和AFM照片表明化学刻蚀时间决定了试样表面形貌和粗糙度。FTIR用来研究氟硅烷(G502)与AA2024表面的结合。结果说明FAS(氟硅烷)分子与铝合金表面的三氧化二铝发生反应,并在阳极氧化膜层表面展示出优异的结合性能。超疏水表面的耐腐蚀性能通过在质量分数为3.5%的NaCl溶液中进行动电位极化和交流阻抗(EIS)测试。电化学测试结果和等效电路模型显示出超疏水表面显著改善抗腐蚀性能。
关键词: 超疏水  化学刻蚀  阳极氧化  耐腐蚀
基金项目: 
Abstract: A superhydrophobic surface was fabricated by chemical etching and anodization on AA2024 aluminum alloy. A static water contact angle of more than 150° was achieved at a wide pH value range when the surface chemical etching time was more than 3 min. The SEM and AFM images showed that the surface morphology and roughness were dependent on chemical etching time. The FTIR results indicated that the FAS (fluorinated agent silane) molecules reacted with alundum on the aluminum alloy surface and the surface exhibited excellent adhesion performance on the anodization specimen. The corrosion resistance of the superhydrophobic surfaces was estimated by potentiodynamic polarization and electrochemical impedance spectroscopy (EIS) measurements in 3.5wt% NaCl aqueous solution. The electrochemical measurements and appropriate equivalent circuit models revealed that the anticorrosion performance was greatly improved by the superhydrophobic surface.
Keywords: superhydrophobic  chemical etching  anodization  anticorrosion
 
摘要点击次数:  1642
全文下载次数:  1698
李松梅,李 彬,刘建华,于 美.铝合金表面用化学刻蚀和阳极氧化法制备的超疏水膜层的耐蚀性能(英文)[J].无机化学学报,2012,28(8):1755-1762.
查看全文  查看/发表评论  下载PDF阅读器
Support information: