张琳琳,王修春,牛玉超,伊希斌,潘喜庆,王金伟.铝合金低乙醇含量硅烷化处理技术的研究[J].表面技术,2015,44(5):9-14,19.
ZHANG Lin-lin,WANG Xiu-chun,NIU Yu-chao,YI Xi-bin,PAN Xi-qing,WANG Jin-wei.Research of Aluminum Silane Treatment Technology with Low Ethanol Content[J].Surface Technology,2015,44(5):9-14,19
铝合金低乙醇含量硅烷化处理技术的研究
Research of Aluminum Silane Treatment Technology with Low Ethanol Content
投稿时间:2014-11-27  修订日期:2015-05-20
DOI:10.16490/j.cnki.issn.1001-3660.2015.05.003
中文关键词:  铝合金  硅烷化处理  耐蚀性
英文关键词:aluminum alloy  silane treatment  corrosion resistance
基金项目:国家自然科学基金(51402176)
作者单位
张琳琳 1. 山东建筑大学 材料科学与工程学院, 济南 250101; 2. 山东省科学院 新材料研究所, 济南 250014 
王修春 1. 山东建筑大学 材料科学与工程学院, 济南 250101; 2. 山东省科学院 新材料研究所, 济南 250014 
牛玉超 山东建筑大学 材料科学与工程学院, 济南 250101 
伊希斌 山东省科学院 新材料研究所, 济南 250014 
潘喜庆 山东省科学院 新材料研究所, 济南 250014 
王金伟 山东建筑大学 材料科学与工程学院, 济南 250101 
AuthorInstitution
ZHANG Lin-lin 1. School of Materials Science and Engineering, Shandong University of Architecture, Jinan 250101, China;2. New Material Research Institute, Shandong Academy of Sciences, Jinan 250014, China 
WANG Xiu-chun 1. School of Materials Science and Engineering, Shandong University of Architecture, Jinan 250101, China;2. New Material Research Institute, Shandong Academy of Sciences, Jinan 250014, China 
NIU Yu-chao School of Materials Science and Engineering, Shandong University of Architecture, Jinan 250101, China 
YI Xi-bin New Material Research Institute, Shandong Academy of Sciences, Jinan 250014, China 
PAN Xi-qing New Material Research Institute, Shandong Academy of Sciences, Jinan 250014, China 
WANG Jin-wei School of Materials Science and Engineering, Shandong University of Architecture, Jinan 250101, China 
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中文摘要:
      目的 对硅烷偶联剂 KH-550 硅烷化改性铝合金的工艺进行优化,在不影响膜层性能的前提下,创新性降低乙醇含量,以满足工业化生产中安全、低成本的需求。 方法 采用单因素变量法,研究硅烷溶液中硅烷和乙醇的浓度、固化温度及固化时间等因素对硅烷膜耐蚀性的影响,由此确定最佳配方工艺,并分析硅烷膜的表面形貌、成分及疏水性。 结果 采用硅烷、去离子水、乙醇体积比为 5 ° 55 ° 40 的硅烷溶液,涂膜后,在 180 ℃下加热 40 min,能得到较完整均匀、耐蚀性较好的硅烷膜,膜层由 C,O,Si 等元素组成。 硅烷浓度对硅烷膜的耐蚀性及表面接触角影响较大,在最佳工艺下获得的硅烷膜表面接触角可达70. 2°。 结论 硅烷膜对铝合金基体具有一定的屏障作用,保护基体免受腐蚀。
英文摘要:
      Objective To optimize the technology with the silane coupling agent KH-550 for surface modification of aluminum alloy and innovatively reduce the ethanol content without affecting the performance, in order to meet the demand of safety and low cost in the industrialized production. Methods The single factor variable method was used to study the effects of silane and ethnol concentration in the solution, curing temperature and curing time on the silane film corrosion resistance, and thus to determine the best formulation process and analyze the surface morphology, composition and hydrophobicity of the silane film. Results The optimized conditions were as follows. The ratio of silane/ deionized water/ ethanol was 5 /55 /40 (V/ V/ V), the curing temperature was 180 ℃ and the curing time was 40 minutes. In these conditions, a complete and even silane film composed of C, O, Si and other elements with good corrosion resistance was obtained. The concentration of silane had a great influence on the corrosion resistance and the contact angle of the silane film which could be up to 70. 2° under the optimum process. Conclusion The silane film has a certain barrier effect for aluminum substrate, protecting the substrate from corrosion.
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