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J Chin Soc Corr Pro  2012, Vol. 32 Issue (3): 247-250    DOI:
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A PRELIMINARY ON CORROSION MONITORING AND DETECTING OF METAL STRUCTURE IN SIMULATED SEA SPLASH ZONE
CHANG Anle1,2, SONG Shizhe1
1. School of Materials Science and Engineering, Tianjin University, Tianjin 300072
2. CNOOC Changzhou Paint and Coating Industry Research Institute, Changzhou 213026
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Abstract  An analog device of the marine environment corrosion in laboratory conditions was established. This device can simulate a variety of marine corrosion environments, such as wave splash zone, tidal zone and sea water immersion zone, etc. A new type of electrochemical sensor for the waves splash zone corrosion was developed. Electrochemical noise characteristics of simulated corrosion test rack in different parts of the surface were obtained by using this sensor and noise resistance Rn of different parts were compared and analyzed. The results showed that the anticorrosion performance of part B was better than part A.
Key words:  electrochemical noise      simulated corrosion test device      wave splash zone      noise resistance     
Received:  04 May 2011     
ZTFLH: 

TG172.9

 
Corresponding Authors:  SONG Shizhe     E-mail:  szsong@tju.edu.cn

Cite this article: 

CHANG Anle, SONG Shizhe. A PRELIMINARY ON CORROSION MONITORING AND DETECTING OF METAL STRUCTURE IN SIMULATED SEA SPLASH ZONE. J Chin Soc Corr Pro, 2012, 32(3): 247-250.

URL: 

https://www.jcscp.org/EN/     OR     https://www.jcscp.org/EN/Y2012/V32/I3/247

[1] Li D C, Yang M. Seawater Corrosion Handbook[M]. Beijing:National Defense Industry Press, 1985

    (李大超, 杨萌.海水腐蚀手册[M]. 北京: 国防工业出版社, 1985)

[2] Zhu X R, Wang X R. Metal Material Corrosion and Protection of the Ocean[M]. Beijing: National Defense Industry Press, 1999

    (朱相荣, 王相润. 金属材料的海洋腐蚀与防护[M].北京:国防工业出版社, 1999)

[3] Bertocci U, Huet F. Noise analysis applied to electrochemical systems [J]. Corrosion, 1995, 51(2): 131-144

[4] Budevski E, Obretenov W, Bostanov W, et al. Noise analysis in metal deposition expectations and limits[J]. Electrochem. Acta,1989, 34(8): 1023-1029

[5] Zhang J Q, Zhang Z, Cao C N. Analysis and application of electrochemical noise-I. Theory of electrochemical noise analysis[J]. J. Chin. Soc. Corros. Prot., 2001, 21(5): 310-320

    (张鉴清, 张昭, 曹楚南.电化学噪声的分析与应用--I.电化学噪声的分析原理[J].中国腐蚀与防护学报, 2001, 21(5): 310-320)

[6] Li S. Development and Applications of Improved Electrochemical Corrosion sensor in Aquatic Environment[D]. Tianjin:Tianjin University, 2008

    (李森.水环境中改进型腐蚀电化学传感器的研制和应用[D]. 天津: 天津大学, 2008)

[7] Zhou B. Electrochemical Detection for the Corrosion Behavior of Metal Structure in Marine Environment[D]. Tianjin:Tianjin University, 2009

    (周冰.海水环境中钢铁构筑物腐蚀的电化学检测[D]. 天津: 天津大学, 2009)

[8] Chen J F, Bogaerts W F. Electrochemical emission spectroscopy for monitoring uniform and localized corrosion [J].Corrosion, 1996, 52(10): 753-759

[9] Xiong Q. Electrodes System for Electrochemical Noise Measurement of Metal Corrosion and its Application[D]. Tianjin:Tianjin University, 2007

    (熊奇.金属腐蚀的电化学噪声检测电极系统及其应用[D]. 天津: 天津大学, 2007)

[10] Song S Z. Research Methods of Electrochemical Corrosion[M]. Beijing: Chemical Industry Press, 1988

     (宋诗哲.腐蚀电化学研究方法[M]. 北京: 化学工业出版社, 1988)

[11] Bertocci U, Huet F, Nogueira R, et al. Drift removal procedures for PSD calculation [A]. NACE 2001[C]. US, 2001, 01291

[12] Bertocci U, Huet F, Nogueira R. Drift removal procedures in the analysis of electrochemical noise [J]. Corrosion, 2002,58(4): 337-347

[13] Eden D A, Hladky K, John D G, et al. Electrochemical noise simultaneous monitoring of potential and current noise signals from corroding electrodes [A]. NACE 1986[C]. US, 1986, 86274

[14] Chen J F, Bogaerts W F. The physical meaning of noise resistance[J]. Corros. Sci., 1997, 37(11): 1839-1842

[15] Lee C, Mansfeld F. Analysis of electrochemical noise data for a passive system in the frequency domain [J]. Corros. Sci.,1998, 40(6): 959-962

[16] Mansfeld F, Xiao H. Electrochemical impedance and noise data for polymer coated steel exposed at remote marine test sites[J]. Prog. Org. Coatings, 1997, 30: 89-100
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