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2024铝合金氟铝酸盐转化膜的制备及其防腐蚀性能
引用本文:王娜娜,郭瑞光,唐长斌,张力,房新建.2024铝合金氟铝酸盐转化膜的制备及其防腐蚀性能[J].材料保护,2012,45(5):38-41,86,87.
作者姓名:王娜娜  郭瑞光  唐长斌  张力  房新建
作者单位:西安建筑科学大学西北水资源与环境生态教育部重点实验室,陕西西安,710055
基金项目:国家自然科学基金项目(20976143);教育部高等学校博士学科点专项科研基金(20096120110007)
摘    要:为了寻找替代传统铬酸盐转化的处理工艺,采用由NaF,(NH4)2SiF6,(NaPO3)6和钛盐促进剂组成的转化液,在2024铝合金表面制备了一种氟铝酸盐化学转化膜,优化了转化液组分及转化工艺条件。结果表明:最优工艺为5.0 g/L NaF,5.0 g/L(NH4)2SiF6,0.9 g/L(NaPO3)6,0.5 g/L钛盐促进剂,pH值为4.7,室温,20 min;最优工艺所得氟铝酸盐转化膜由排列紧密且形状规则的晶体颗粒组成,表面覆盖有胶状物,膜层连续而致密、呈亚光,组成(质量分数)为7.53%O,48.87%F,19.11%Na,20.78%Al,0.79%Si,1.66%P,1.26%Cu;氟铝酸盐转化膜耐蚀性优良,最优工艺所得转化膜耐盐雾腐蚀达285 h,其使铝合金在3.5%NaCl溶液中的腐蚀电位增加了58 mV,腐蚀电流密度降为钝化前的1/9。

关 键 词:化学转化膜  铝合金  工艺优化  氟铝酸盐转化膜  (NH)SiF  (NaPO)  耐腐蚀性能

Preparation of Fluoroaluminate Conversion Coating on 2024 Aluminum Alloy and Evaluation of Its Corrosion Resistance
WANG Na-na,GUO Rui-guang,TANG Chang-bin,ZHANG Li,FANG Xin-jian.Preparation of Fluoroaluminate Conversion Coating on 2024 Aluminum Alloy and Evaluation of Its Corrosion Resistance[J].Journal of Materials Protection,2012,45(5):38-41,86,87.
Authors:WANG Na-na  GUO Rui-guang  TANG Chang-bin  ZHANG Li  FANG Xin-jian
Affiliation:(Key Laboratory of Ministry of Education for Northwest Water Resources,Environment and Ecology,Xi’an University of Architecture and Technology,Xi’an 710055,China)
Abstract:Chromium-free conversion coating was prepared on the surface of 2024 Al alloy using chemical conversion solution containing NaF,(NH4)2SiF6,(NaPO3)6 and inorganic accelerator.The composition of the conversion fluid and the conversion condition were optimized.It was found that the optimized coating was obtained when Al alloy immersed in conversion fluid consisted of 5.0 g/L NaF,5.0 g/L(NH4)2SiF6,0.9 g/L(NaPO3)6 and 0.5 g/L titanium-salt accelerator with a pH value of 4.7 at room temperature for 20 min.The conversion coating obtained under the optimized condition consisted of densely packed crystallites with regular shapes and was continuous,compact and matt,while its surface was covered by gel-like substances.Besides,the elemental composition(mass fraction) of the conversion coating was determined to be 7.53% O,48.87% F,19.11% Na,20.78% Al,0.79% Si,1.66% P and 1.26% Cu.Moreover,as-prepared fluoroaluminate conversion coating was able to increase the corrosion potential of the Al alloy by 58 mV and reduce the corrosion current density to 1/9 of that before passivation,showing good corrosion resistance(it was able to endure neutral salt-spray for up to 285 h).
Keywords:chemical conversion coating  2024 Al alloy  optimized process  fluoroaluminate conversion coating  (NH4)2SiF6  (NaPO3)6  corrosion resistance
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