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电化学(中英文) ›› 2001, Vol. 7 ›› Issue (3): 345-350. 

• 研究论文 • 上一篇    下一篇

A3钢在缓蚀颜料提取液中的EIS研究

辜志俊,廖永贵,张志刚,郭琦龙,苏方腾,胡文云,陈衍珍   

  1. 中科院福建物质结构研究所二部!福建厦门361012,中科院福建物质结构研究所二部!福建厦门361012,中科院福建物质结构研究所二部!福建厦门361012,中科院福建物质结构研究所二部!福建厦门361012,中科院福建物质结构研究所二部!福建厦门361012,厦门大学固体表面物理化学国家重点实
  • 收稿日期:2001-08-28 修回日期:2001-08-28 出版日期:2001-08-28 发布日期:2001-08-28

Electrochemical Impedance Spectroscopy Study on A3 Steel in Anti-corrosive Pigment Extract Solution

GU Zhi_jun 1* , LIAO Yong_gui 1, ZHANG Zhi_gang 1, GUO Qi_long 1, SU Fang_teng 1,HU Wen_yun 2,CHEN Yan_zhen 2   

  1. (1.Fujian Inst. of Res. on the Structure of Matter, Chinese Academy of Scie., Xiamen, 361012, China; 2. State Key Lab. for Phys.
  • Received:2001-08-28 Revised:2001-08-28 Published:2001-08-28 Online:2001-08-28

摘要: 应用EIS研究了A3钢在不同 pH值的磷酸锌或三聚磷酸铝 3.5 %NaCl提取液中的腐蚀行为 .结果显示 ,相同条件下 ,A3钢的电阻值随溶液 pH值增加而增加 ,电容值则相反 .在磷酸锌3.5 %NaCl提取液中 ,因磷酸锌的溶解度太小 ,没有足够的量对金属基底A3钢进行有效的保护 .在 pH值为 6的三聚磷酸铝 3.5 %NaCl提取液中 ,A3钢表现出较明显的缓蚀现象 ,可能是因为三聚磷酸根离子与腐蚀产物Fe2 + 、Fe3+ 络合并在钢表面形成了一层致密的保护膜 ,从而有效地阻止了腐蚀介质的进一步入侵 .防蚀颜料的溶解度大小是决定它的缓蚀性能优劣的重要因素之一

关键词: A3钢, 缓蚀颜料提取液, 电化学阻抗

Abstract: The corrosion behaviors of A3 steel in different pH, 3.5%NaCl, modified zinc phosphate and aluminum triphosphate extract solutions have been studied by EIS. Results show:(a) The resistance increases with the increase of pH value under the same circumstances, but the capacity is the reverse.(b) Zinc phosphate, because of its low solubility, shows no inhibitive performance for A3 steel in 3.5% NaCl extract solutions. (c) Aluminum triphosphate has good inhibitive performance for A3 steel in 3.5% NaCl extract solutions at a pH of 6, probably because the triphosphate ion can complex with the corrosion_product, such as ferric and ferrous ions, and form a compact protective film that separates effectively the steel substrate from the aggressive media at the steel surface. (d) The solubility of the anticorrosive pigment is one of the most important factors for its inhibitive performance.

Key words: A3 steel, Pigment extract solution, Electrochemical impedance spectroscopy

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