|
|
Effect of Synergistic Action of Cu/Ni on Corrosion Resistance of Low Alloy Steel in a Simulated Tropical Marine Atmosphere |
ZHANG Tianyi1,LIU Wei1( ),FAN Yueming1,LI Shimin1,DONG Baojun1,BANTHUKUL Wongpat1,CHOWWANONTHAPUNYA Thee2 |
1. Corrosion and Protection Center, Institute of Advanced Materials and Technology, University of Science and Technology Beijing, Beijing 100083, China 2. Faculty of International Maritime Studies, Kasetsart University, Sriracha, Chonburi 20230, Thailand |
|
|
Abstract The effect of synergistic action of Cu and Ni on corrosion rate, morphology and composition of the rust formed on three low alloy steels with different contents of Cu and Ni was studied via indoor spray acceleration tests, aiming to simulate the harsh tropical marine atmosphere. Meanwhile, electrochemical impedance spectroscopy (EIS) and linear polarization tests for the three steels were also carried out in 0.5% (mass fraction) NaCl solution. The results show that with the increase of Cu- and Ni-content, the rust layer formed on the steels subjected to spraying test becomes gradually thinner and denser, and the enrichment of Cu in the rust layer mitigates the invasion of Cl-. The charge transfers resistance (Rt) and polarization resistance of the metal dissolution reaction were increased to some extent by the synergistic effect of two elements of Cu and Ni, which accelerated the formation and enhanced the protectiveness of the rust layer through inhibiting the anodic electrochemical reaction.
|
Received: 09 November 2018
|
|
Fund: Supported by National Key R&D Program of China(2016YFE0203600);National Natural Science Foundation of China(51571027) |
Corresponding Authors:
Wei LIU
E-mail: weiliu@ustb.edu.cn
|
[1] | Wang B, Liu Z Y, Chen J Q, et al. Effect of chromium content of weather-resisting steel on weathering resistance [J]. Mater. Prot., 2014, 47(5): 61 | [1] | (王兵, 刘志勇, 陈吉清等. Cr含量对耐候钢耐候性的影响 [J]. 材料保护, 2014, 47(5): 61) | [2] | Liu R, Chen X P, Wang X D, et al. Effect of nickel on corrosion resistance of weathering steels in a simulated marine atmosphere environment [J]. Corros. Sci. Prot. Technol., 2016, 28: 122 | [2] | (刘芮, 陈小平, 王向东等. Ni对耐候钢在模拟海洋大气环境下耐蚀性的影响 [J]. 腐蚀科学与防护技术, 2016, 28: 122) | [3] | Ge Q C, Wang B, Li Y Z, et al. Effect of Sn on corrosion resistance of weathering steel under marine atmosphere with high temperature and humidity [J]. Heat Treat. Met., 2017, 42(2): 67 | [3] | (葛秋辰, 汪兵, 李远征等. Sn对耐候钢高湿热海洋大气环境下耐蚀性能的影响 [J]. 金属热处理, 2017, 42(2): 67) | [4] | Liu R, Chen X P, Wang X D, et al. Effect of alloy elements on corrosion resistance of weathering steels in marine atmosphere environment [J]. Hot Work. Technol., 2014, 43(20): 19 | [4] | (刘芮, 陈小平, 王向东等. 合金元素对耐候钢在海洋大气环境下耐蚀性的影响 [J]. 热加工工艺, 2014, 43(20): 19) | [5] | Luo S Z, Zheng Y G, Jing H M, et al. Effect of cavitation on electrochemical corrosion behavior of 20SiMn low alloy steel in 3%NaCl solution [J]. Corros. Sci. Prot. Technol., 2003, 15: 311 | [5] | (骆素珍, 郑玉贵, 敬和民. 空蚀对20SiMn在3%NaCl溶液中的电化学腐蚀行为的影响 [J]. 腐蚀科学与防护技术, 2003, 15: 311) | [6] | Chen J, Li Q A, Zhang Q, et al. Effect of corrosion on wear resistance of several metals in seawater [J]. Trans. Mater. Heat Treat., 2014, 35(12): 166 | [6] | (陈君, 李全安, 张清等. 海水腐蚀对几种金属材料耐磨性能的影响 [J]. 材料热处理学报, 2014, 35(12): 166) | [7] | Tao Y Q, Liu G, Li Y S, et al. Corrosion wear properties of 2024 Al-Alloy in artificial seawater [J]. J. Chin. Soc. Corros. Prot., 2016, 36: 587 | [7] | (陶永奇, 刘刚, 黎业生等. 海水环境下2024铝合金腐蚀磨损性能研究 [J]. 中国腐蚀与防护学报, 2016, 36: 587) | [8] | Li X G. Corrosion Behaviors and Mechanisms of Marine Engineering Materials [M]. Beijing: Chemical Industry Press, 2017: 4 | [8] | (李晓刚. 海洋工程材料腐蚀行为与机理 [M]. 北京: 化学工业出版社, 2017: 4) | [9] | Jin S, Liu C M, Lin X, et al. Effect of inorganic anions on the corrosion behavior of UNS S32750 duplex stainless steel in chloride solution [J]. Mater. Corros., 2015, 66: 1077 | [10] | Ningshen S, Mudali U K, Mittal V K, et al. Semiconducting and passive film properties of nitrogen-containing type 316LN stainless steels [J]. Corros. Sci., 2007, 49: 481 | [11] | Geringer J, Macdonald D D. Modeling fretting-corrosion wear of 316L SS against poly (methyl methacrylate) with the point defect model: Fundamental theory, assessment, and outlook [J]. Electrochim. Acta, 2012, 79: 17 | [12] | Nicic I, Macdonald D D. The passivity of type 316L stainless steel in borate buffer solution [J]. J. Nucl. Mater., 2008, 379: 54 | [13] | Diaz I, Cano H, De La Fuente D, et al. Atmospheric corrosion of Ni-advanced weathering steels in marine atmospheres of moderate salinity [J]. Corros. Sci., 2013, 76: 348 | [14] | Jaén J A, Iglesias J, Adames O. Indoor atmospheric corrosion of conventional weathering steels in the tropical atmosphere of Panama [J]. Hyperfine Interact., 2014, 224: 279 | [15] | Jaén J A, Mu?óz A, Justavino J, et al. Characterization of initial atmospheric corrosion of conventional weathering steels and a mild steel in a tropical atmosphere [J]. Hyperfine Interact., 2009, 192: 51 | [16] | Wang Z F, Liu J R, Wu L X, et al. Study of the corrosion behavior of weathering steels in atmospheric environments [J]. Corros. Sci., 2013, 67: 1 | [17] | Mizoguchi T, Ishii Y, Okada T, et al. Magnetic property based characterization of rust on weathering steels [J]. Corros. Sci., 2005, 47: 2477 |
|
No Suggested Reading articles found! |
|
|
Viewed |
|
|
|
Full text
|
|
|
|
|
Abstract
|
|
|
|
|
Cited |
|
|
|
|
|
Shared |
|
|
|
|
|
Discussed |
|
|
|
|