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钢铁点蚀坑内腐蚀产物对点蚀扩展的影响
Influence of Solid Corrosion Products in Corrosion Pits on Growth of Corrosion Pits

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徐玮辰 1 *   于菲 2   刘敏 3  
文摘 为了探讨钢铁点蚀坑内部生成的腐蚀产物对点蚀生长的影响,使用自制的2种铁微电极,通过电化学三电极体系,使之在阳极极化条件下发生溶解,一定程度上模拟点蚀生长的特征。结果表明:采用微型注射器可以将2种铁微电极表面黑色腐蚀产物沉积层冲洗到模拟点蚀坑外部,消除其对点蚀扩展的影响;通过对比冲洗前后的阳极溶解电流随时间的变化趋势,可以计算该腐蚀产物对模拟点蚀生长速率的影响;借助2种铁微电极的特殊性,提出了对其点蚀内部腐蚀产物影响进行量化的方法,将其用于修正点蚀内部金属离子的扩散系数,在一定程度上可完善点蚀的生长和预测模型。
其他语种文摘 In order to study the effect of solid corrosion products within corrosion pits on the growth of corrosion pits, the homemade iron micro-electrodes were dissolved under anodic polarization conditions by 3-electrode electrochemical system, which was used to simulate the features of corrosion pits. Results showed that on the surface of iron microelectrode, a deposition layer of black corrosion products was observed, which could be removed out by the flushing of a micro - syringe to eliminate its influence of the layer. By comparing the relationship between anodic current and time before and after flushing, the effect of corrosion products on the growth rate of the simulated corrosion pits could be calculate. Moreover, according to the characteristics of microelectrode, the method for quantification of the effect of corrosion products inside corrosion pits was put forward, which could correct the diffusion coefficient to improve and perfect the models of corrosion pit growth and prediction to a certain extent.
来源 材料保护 ,2017,50(11):5-8 【核心库】
关键词 点蚀坑内部固态腐蚀物 ; 铁微电极 ; 点蚀扩展
地址

1. 中国科学院海洋研究所, 山东, 青岛, 266071  

2. 青岛大学转化医学研究院, 山东, 青岛, 266021  

3. 国网浙江省电力公司电力科学研究院, 浙江, 杭州, 310006

语种 中文
文献类型 研究性论文
ISSN 1001-1560
学科 金属学与金属工艺
基金 “海上风电设备基础和塔筒防腐技术研究与示范应用”项目 ;  国家自然科学基金青年科学基金
文献收藏号 CSCD:6111035

参考文献 共 12 共1页

1.  Flis J. Effect of carbon on stress corrosion cracking and anodic oxidation of iron in NaOH so-lutions. Corrosion Science,2008,50(6):1726-1733 CSCD被引 1    
2.  Ha H. Effects of selected water chemistry variables on copper pitting propagation in potable water. Electrochimica Acta,2011,56(17):6165-6183 CSCD被引 1    
3.  Poulson B. Fractography of stress corrosion cracking in carbon steels. Corrosion Science,1975,15(8):469-477 CSCD被引 2    
4.  Xu W. In-situ synchrotron studies of the effect of nitrate on iron artificial pits in chloride solutions (II). On the solid corrosion products. Journal of the Electrochemical Society,2015,162(6):C243-C250 CSCD被引 1    
5.  Sridhar N. In situ study of salt film stability in simulated pits of nickel by Raman and electrochemical impedance spectroscopies. Journal of the Electrochemical Society,1997,144(12):4243-4253 CSCD被引 1    
6.  Haisch T. On the influence of microstructure and carbide content of steels on the electrochemical dissolution process in aqueous NaCl -electrolytes. Materials and Corrosion - Werkstoffe Und Korrosion,2002,53(10):740-755 CSCD被引 2    
7.  Haisch T. Electrochemical machining of the steel 100Cr6 in aqueous NaCl and NaN03 solutions: microstructure of surface films formed by carbides. Electrochimica Acta,2001,47(1/2):235-241 CSCD被引 5    
8.  Green J A S. Electrochemical properties of ferrite and cementite in relation to stress corrosion of mild steels in nitrate solutions. Corrosion,1968,24(3):66-69 CSCD被引 1    
9.  Mi N. Synchrotron X-ray Studies of Atmospheric Pitting Corrosion of Stainless Steel,2013:107 CSCD被引 1    
10.  Tang Y C. Magnetic field effects on the corrosion of artificial pit electrodes and pits in thin films. Journal of the Electrochemical Society,2007,154(7):362-370 CSCD被引 3    
11.  Steinsmo U. Dissolution and repassivation kinetics of Fe-Cr alloys in pit solutions. 1. Effect of the surface salt layer. Journal of the Electrochemical Society,1993,140(3):643-653 CSCD被引 1    
12.  Xu W. The inhibitive effect of carbon containing corrosion products inside corrosion pits on the repassivation of carbon steels. International Journal of Electrochemical Science,2016(11):4323-4336 CSCD被引 1    
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