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1、322Vol.32No.2Apr. 201220124Journal of Chinese Society for Corrosion and ProtectionSS40021, 22321.3300632.3300633.330024:SS400:SS40016(EIS:A12, 34, 5570SEM XRDEDSKelvin(SKPSS400Kelvin:1005453720120201090611032O K Fe KI n t e n s i t y / a . u . 2 /Fig.2XRD pattern of the pre-formed oxide scale0. 0. -

2、0. -0. / V-0. E-0. -1. -1. -1. -1. -8-7-6-5-4-3-2lg (I /Acm Fig.3Polarization curves of the specimens with andwithout the oxide scale2:SS400111112322:SS400113114 Ã³Ó Æ ¿ªÜ À¶Ö ¤ ², Õ¼, ¬ ß. ι ¶Ö 

3、0;¼Ñ J. ¶Öǧ ( ( X80 32 7 Li M S. High Temperature Corrosion of MetalsM. Beijing: Metallurgical Industry Press, 2001 ( . M. : , 2001 8 He A H. The eect of oxide lm on the electrochemical corrosion behaviors of hot rolled steelD. Qingdao: Ocean University of China, 2007

4、( . D. : , 2007 9 Wang Y H, Wang J, Zhang J B. Inuences of current density on the properties of micro-arc oxidation coatings on AZ91D Mg alloyJ. J. Chin. Soc. Corros. Prot., 2005, 25(6: 332-335 ( , , . AZ91D J. , 2005, 25(6: 332-335 10 Liang P, Li X G, Du C W, et al. Eect of dissolved oxygen on corr

5、osion resistance of X80 pipeline steel in NS4 solu- tionJ. Corros. Sci. Prot. Technol., 2009, 21(1: 20-23 ¿ À ¿Â NS4 Î Ñ ««, 2009, 21(1: 20-23 Ñ ÉÊ ¿ Õ ­ ¸ ¿¶ Ö ¦Õ § ܼ Ñ Õ &#

6、209;ÅÊ § ßÝ 11 Li J B, Zuo J E. Inuence of temperature and sulfur ion on carbon dioxide corrosion behavior of N80 steel J. Corros. Sci. Prot. Technol., 2009, 21(1: 44-47 ¿¼, ­ . ÀÆ Ô ¥ N80 ¿ CO ¶Ö¦Õ§ 

7、0;¼Ñ J. ¶Öǧ ««, 2009, 21(1: 44-47 2 ­Ò Æ Ë­µ ¦×¢Æ Ü¼Ñ ÑÅ¶Ö § ¿ Õ­ 12 Dong C F, Sheng H, An Y H, et al. Local electrochemical behavior of 2Al2 aluminum all

8、oy in the initial stage of atmospheric corrosion under Cl conditionsJ. J. Univ. Sci. Technol. Beijing, 2009, 31(7: 878-883 ( 31(7: 878-883 ¨Æ , Ê, ·Ûß. Cl Ñ¶Ö ·Ü ¦Õ§ J. ¿ 2Al2 Û ¿Â × Ç« §

9、67; , 2009, EFFECTS OF OXIDE SCALE ON CORROSION PERFORMANCE OF SS400 HOT ROLLED STRIP ZHOU Xianliang1,2 , ZHU Min2 , HUA Xiaozhen2 , WU Ning3 , YE Zhiguo2 1. Key Laboratory of Nondestructive Test, Ministry of Education, Nanchang Hangkong University, Nanchang 330063; 2. School of Materials Science an

10、d Engineering, Nanchang Hangkong University, Nanchang 330063; 3. JiangXi Hongdu Aviation Industry (Group Corporation Limited, Nanchang 330024 Abstract: SEM, XRD and EDS were used to observe and analyze the structure and phase composition of the oxide scale on the SS400 hot rolled strip steel prepare

11、d by heat treatment in the laboratory. Electrochemical polarization, electrochemical impedance spectroscopy (EIS and scanning Kelvin probing (SKP were also used to reveal the relationship between the state of the oxide scale of hot rolled strip and its corrosion behavior. The results showed that the

12、 continuous, compact and integrated oxide scale could retard the general corrosion rate and protect steel substrate. With corrosion time increasing, the potential dierence between the cathodic and anodic areas in corrosion cell increased, so the strip corroded more quickly, accompanied with the appearance of the distinct characters of localized corrosion and the cathodic and anodic areas sep

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