Please wait a minute...
J Chin Soc Corr Pro  2010, Vol. 30 Issue (5): 374-378    DOI:
Research Articles Current Issue | Archive | Adv Search |
EFFECT OF HYDROSTATIC PRESSURE OF 3.5%NaCl SOLUTION ON THE CORROSION BEHAVIOR OF EPOXY COATING
LIU Haoyu1, LIANG Xiaofeng1,2, SHAO Yawei1, MENG Guozhe1,ZHANG Tao1, WANG Fuhui1,3
1. Corrosion and Protection Laboratory, College of Materials Science and Chemical Engineering, Harbin Engineering University, Harbin 150001
2. Narada Power Source Co.Ltd, Hangzhou310013
3. State Key Laboratory for Corrosion and Protection, Institute of Metal Research, Chinese Academy of Sciences, Shenyang 110016
Download:  PDF(1087KB) 
Export:  BibTeX | EndNote (RIS)      
Abstract  The effect of hydrostatic pressures of 3.5%NaCl solution on the corrosion resistance of the epoxy coating was studied by using electrochemical impedance spectroscopy (EIS). The results revealed that the hydrostatic pressure greatly affected the failure process of the coating. The diffusion rate of the electrolyte solution through the coatings was accelerated in the solution under high hydrostatic pressure. Compared with the case under atmospheric pressure, the coating resistance was reduced; the charge-transfer resistance was decreased, metal corrosion reaction was more accelerated; the protection properties of the coating was deteriorated.
Key words:  epoxy coating      hydrostatic pressure      EIS      degradation     
Received:  30 March 2009     
ZTFLH: 

TG174.46

 
Corresponding Authors:  SHAO Yawei     E-mail:  shaoyawei@hrbeu.edu.cn

Cite this article: 

LIU Haoyu, LIANG Xiaofeng, SHAO Yawei, MENG Guozhe,ZHANG Tao, WANG Fuhui. EFFECT OF HYDROSTATIC PRESSURE OF 3.5%NaCl SOLUTION ON THE CORROSION BEHAVIOR OF EPOXY COATING. J Chin Soc Corr Pro, 2010, 30(5): 374-378.

URL: 

https://www.jcscp.org/EN/     OR     https://www.jcscp.org/EN/Y2010/V30/I5/374

[1] GB5776-86, Corrosion test method of metallic materials routine exposure to surface sea water [S].     (GB5776-86,金属材料在表层海水中常规暴露腐蚀试验方法 [S].) [2] Hou B R. Corrosion and Protection in Oceans [M]. Beijing: Science Press, 1997     (侯保荣. 海洋腐蚀与防护 [M]. 北京:科学出版社,1997) [3] Xu L K, Li W J, Chen G Z. Deep sea corrosion test technique [J].Mar. Sci., 2005, 29(7): 1-3     (许立坤,李文军,陈光章. 深海腐蚀试验技术 [J]. 海洋科学,2005, 29(7): 1-3) [4] Zhang J Q, Cao C N. Study and evaluation on organic coatings by electrochemical impedance spectroscopy [J]. Corros. Prot.,1998, 19(3): 99-104     (张鉴清,曹楚南. 电化学阻抗谱方法研究评价有机涂层 [J]. 腐蚀与防护,1998, 19(3):99-104) [5] Amirudin A, Thierry D. Application of electrochemical impedance spectroscopy to study the degradation of polymer-coated metals [J]. Prog. Org. Coat., 1995, 26(1): 1-28 [6] Mansfeld F. Use of electrochemical impedance spectroscopy for the study of corrosion protection by polymer coatings [J]. J. Appl. Electrochem.,1995, 25(3): 187-191 [7] Destreri M D G, Vogelsnag J, Fedrizzi L, et al. Water up-take evaluation of new waterborne and high solid epoxy coatings. PartⅡ: electrochemical impedance spectroscopy [J].Prog. Org. Coat., 1999, 37(2): 69-81 [8] Zhang J T , Hu J M , Zhang J Q. Studies of water transport behavior and impedance models of epoxy-coated metals in NaCl solution by EIS [J].Prog. Org. Coat., 2004, 51(2): 145-151 [9] Westing van E P M, Ferrari G M, Wit de J H W. The determination of coating performance using electrochemical impedance spectroscopy [J]. Corros. Sci., 1994, 36(6): 957-977 [10] Deflorian F, Fedrizzi L, Rossi S, et al. Organic coating capacitance measurement by EIS: ideal and actual trends [J]. Electrochim. Acta, 1999, 44(22): 4243-4249 [11] Suay J J, Rodriguez M T, Razzaq K A, et al. The evaluation of anticorrosive automotive epoxy coatings by means of electrochemical impedance spectroscopy [J]. Prog. Org. Coat., 2003, 46(2): 121-129 [12] Mirabedini S M, Thompsonb G E, Moradian S, et al. Corrosion performance of powder coated aluminium using EIS [J]. Prog. Org. Coat., 2003, 46(2): 112-120 [13] Haruyama S, Asari S, Tsuru T. Corrosion protection by organic coatings [J]. J. Electrochem. Soc., 1987, 87(2): 197-201 [14] Haruyama S, Sudo S. Electrochemical impedance for a large structure in soil [J]. Electrochim. Acta, 1993, 38(14): 1857-1865
[1] LIU Yang, WU Jinyi, YAN Xiaoyu, CHAI Ke. Effect of Bacillus flexus on Degradation of Polyurethane Varnish Coating in Marine Environment[J]. 中国腐蚀与防护学报, 2021, 41(1): 36-42.
[2] YUE Liangliang, MA Baoji. Effect of Ultrasonic Surface Rolling Process on Corrosion Behavior of AZ31B Mg-alloy[J]. 中国腐蚀与防护学报, 2020, 40(6): 560-568.
[3] HU Lulu, ZHAO Xuyang, LIU Pan, WU Fangfang, ZHANG Jianqing, LENG Wenhua, CAO Fahe. Effect of AC Electric Field and Thickness of Electrolyte Film on Corrosion Behavior of A6082-T6 Al Alloy[J]. 中国腐蚀与防护学报, 2020, 40(4): 342-350.
[4] CAO Jingyi, WANG Zhiqiao, LI Liang, MENG Fandi, LIU Li, WANG Fuhui. Failure Mechanism of Organic Coating with Modified Graphene Under Simulated Deep-sea Alternating Hydrostatic Pressure[J]. 中国腐蚀与防护学报, 2020, 40(2): 139-145.
[5] SHI Chao,SHAO Yawei,XIONG Yi,LIU Guangming,YU Yuelong,YANG Zhiguang,XU Chuanqin. Influence of Silane Coupling Agent Modified Zinc Phosphate on Anticorrosion Property of Epoxy Coating[J]. 中国腐蚀与防护学报, 2020, 40(1): 38-44.
[6] ZHAO Shuyan,TONG Xinhong,LIU Fuchun,WENG Jinyu,HAN En-Hou,LI Xiaohui,YANG Lin. Corrosion Resistance of Three Zinc-rich Epoxy Coatings[J]. 中国腐蚀与防护学报, 2019, 39(6): 563-570.
[7] WANG Guirong,ZHENG Hongpeng,CAI Huayang,SHAO Yawei,WANG Yanqiu,MENG Guozhe,LIU Bin. Failure Process of Epoxy Coating Subjected Test of Alternating Immersion in Artificial Seawater and Dry in Air[J]. 中国腐蚀与防护学报, 2019, 39(6): 571-580.
[8] Guirong WANG,Yawei SHAO,Yanqiu WANG,Guozhe MENG,Bin LIU. Effect of Applied Cathodic Protection Potential on Cathodic Delamination of Damaged Epoxy Coating[J]. 中国腐蚀与防护学报, 2019, 39(3): 235-244.
[9] Liang CHANG, Chao SHI, Yawei SHAO, Yanqiu WANG, Bin LIU, Guozhe MENG. Effect of Phytic Acid Conversion Film on Corrosion Resistance of Epoxy Varnish Coating[J]. 中国腐蚀与防护学报, 2018, 38(3): 265-273.
[10] Bei QIAN, Chengbao LIU, Zuwei SONG, Junfeng REN. Anticorrosion Performance of Epoxy Coating Modified with Nanocontainers[J]. 中国腐蚀与防护学报, 2018, 38(2): 133-139.
[11] Jie ZHANG, Xiuhua HU, Chuanbo ZHENG, Jizhou DUAN, Baorong HOU. Influence of Calcareous Deposit on Corrosion Behavior of Q235 Carbon Steel in Marine Microalgae Containing Medium[J]. 中国腐蚀与防护学报, 2018, 38(1): 18-25.
[12] Xiaofei CUI, Xiaoming TAN, De WANG, Ang QIAN. Assessment of Aging Performance of Polyurethane Coating for 7B04 Al-alloy with an Accelerated Testing Spectrum[J]. 中国腐蚀与防护学报, 2018, 38(1): 74-80.
[13] Jia WANG, Mengyang JIA, Zhaohui YANG, Bing HAN. On Completeness of EIS Equivalent Circuit Analysis for Electrochemical Corrosion Process[J]. 中国腐蚀与防护学报, 2017, 37(6): 479-486.
[14] Yinze ZUO, Liang CHEN, Qing FENG, Yanmin GAO. Effect of Self-assembly Film of PFOA/Silane Coupling Agent on Properties of Epoxy Rust-tolerant Coating Applied on Q235 Carbon Steel[J]. 中国腐蚀与防护学报, 2017, 37(6): 554-560.
[15] Fandi MENG, Li LIU, Ying LI, Fuhui WANG. Embedded Microelectrode for In situ Electrochemical Impedance Spectroscopy Measurement of Organic Coating Under Marine Alternating Hydrostatic Pressure[J]. 中国腐蚀与防护学报, 2017, 37(6): 561-566.
No Suggested Reading articles found!