摘要
为了提高7A85铝合金的耐蚀性,采用单极性正脉冲微弧氧化(MAO)技术在其表面制备了陶瓷膜层,并采用稀土铈盐、铬酸盐和SiO2溶胶对MAO膜进行封闭处理。采用扫描电子显微镜(SEM)、X射线衍射仪和电化学工作站研究了封闭处理对膜层表面形貌、结构和在酸性Na Cl溶液中腐蚀行为的影响。实验发现,MAO膜在酸性Na Cl溶液中不能有效地保护铝合金基体。稀土铈盐和铬酸盐封闭处理通过沉积水合氢氧化物封闭孔隙,可以提高MAO膜的耐蚀性。但在酸性溶液中,封孔物质会和H+发生反应而溶解,故经封闭的MAO试样也会发生腐蚀失效。SiO2溶胶封闭处理后MAO膜表面覆盖一层凝胶,使膜层成为完整的致密层,可以保护铝合金基体在酸性Na Cl溶液中免受腐蚀。
Ceramic coatings were fabricated on 7A85 aluminum alloy by unipolar positive pulsed micro-arc oxidation (MAO) treatment for enhancing corrosion resistance. A bi-layer coating was formed with large pores between the lay- ers. The outer layer contained several micro pores and cracks. Therefore, cerium nitrate, potash bichromate and SiO2 sol were adopted to seal the MAO coatings. Scanning electron microscope, X-ray diffraction and electrochemistry in- strument were used to investigate the effect of sealing treatments on the surface morphology, coating structure and corrosion resistance of MAO coatings. Results show that the MAO coating can not protect aluminum alloy from acid NaC1 solution for the existing of defects. The defects can be sealed by precipitations produced by cerium nitrate and potash bichromate sealing treatment, and corrosion resistance of the MAO coating is improved. However, the sealed coatings also fail in the acid NaC1 solution for dissolution of the precipitation. After sealing with SiO2 sol, the MAO coating is covered with a SiO2 gel layer has become a compact barrier layer to protect aluminum substrate from corro- sion in acid NaCI solution.
出处
《无机材料学报》
SCIE
EI
CAS
CSCD
北大核心
2015年第6期627-632,共6页
Journal of Inorganic Materials
基金
国家自然科学基金(51171154)
轻合金加工科学与技术国防重点学科实验室开放课题研究基金(gf201401001)~~
关键词
铝合金
微弧氧化
封闭处理
电化学
耐蚀性
SIO2溶胶
aluminum alloy
micro-arc oxidation
seal treatment
electrochemistry
corrosion resistance
Si02 sol