Please wait a minute...
Acta Metall Sin  2010, Vol. 46 Issue (8): 946-950    DOI: 10.3724/SP.J.1037.2010.00129
论文 Current Issue | Archive | Adv Search |
IN SITU IMPEDANCE CHARACTERISTICS OF ZIRCONIUM ALLOY CORROSION IN HIGH TEMPERATURE AND PRESSURE WATER ENVIRONMENT
YANG Bo, LI Moucheng, YAO Meiyi, ZHOU Bangxin, SHEN Jianian
Institute of Materials, Shanghai University, Shanghai 200072
Cite this article: 

YANG Bo LI Moucheng YAO Meiyi ZHOU Bangxin SHEN Jianian. IN SITU IMPEDANCE CHARACTERISTICS OF ZIRCONIUM ALLOY CORROSION IN HIGH TEMPERATURE AND PRESSURE WATER ENVIRONMENT. Acta Metall Sin, 2010, 46(8): 946-950.

Download:  PDF(695KB) 
Export:  BibTeX | EndNote (RIS)      
Abstract  

The electrochemical impedance spectroscopy (EIS) was used to analyze the corrosion evolution of pre– and post–transition of the annealed Zr–4 alloy in 0.01 mol/L LiOH aqueous solution at 360 ℃/18.6 MPa. The results show that oxidation weight gain of Zr–4 alloy increases slowly before corrosion transition. When Zr is oxidized into ZrO2, the stress appears in the oxide film due to volume expansion. With gradually thickening of the oxide film, accumulation of micro–defects will relax the stress in outer layer of oxide film. As a result, the uniform and compact oxide layer turns into double lyer with a porous outer lyer and a dense inner one. Meanwhile the impedance spectra evolve from single arc into doble capacitive arcs. When the oxide film forms macro–defects such as cracks, corrosion trasition tkes place, giving rise to an accelertion of oxidation weight gain and the rapid drop of impedace nd corrosion potential. Corrosion potential and electrochemical impedace spectroscopy are able to obtain in situ some informatioof the trasition point.

Key words:  Zr–4 alloy      high temperature and presure of water envirnment      electrochemical impedance spectroscopy (EIS)      corroson     
Received:  15 March 2010     
Fund: 

Supported by National Natural Science Foundation of China (No.50771109) and Weapon & Equipment Pre–research Fund (No.9140C700401803)

URL: 

https://www.ams.org.cn/EN/10.3724/SP.J.1037.2010.00129     OR     https://www.ams.org.cn/EN/Y2010/V46/I8/946

Macdonald D D, Mankowski J, Karaminezhaad-Ranjbar M,Y H Hu. Corrosion, 1988,44(3):186 Gohr H, Schaller J, Ruhmann H,Garzarolli F. In:Bradley E R,Sabol G P,eds., Zirconium in the Nuclear Industry: 11th International Symposium. ASTM STP 1295, American: American Society for Testing and Materials,1996:pp.181 Ai J H, Chen Y Z, Urquidi-Macdonald M, Macdonald D D. J Electrochem Soc, 2007,154(1): C43 Bojinov M, Cai W, Kinnunen P,Saario T.J Nuc Mater, 2008,378:45 Cao C N. Principles of Electrochemical Corrosion Beijing:Chemical Industry Press,2008:185 Cao C N,Zhang J Q. Introduction to Electrochemical Impedance Spectroscopy.Beijing: Chemical Industry Press,2 Zhou B X,Li Q,Liu W Q,Yao M Y,Chu Y L, Rare Matal Material Eng,2005,26(7):1009 Zhou B X,Li Q,Yao M Y,Liu W Q,Chu Y L. Nucl Power Eng, 2005,26(4):364
[1] FU Xinxin, DONG Junhua, HAN En-hou, KE Wei. ELECTROCHEMICAL IMPEDANCE SPECTROSCOPY MONITORING ON MILD STEEL Q235 IN SIMULATED INDUSTRIAL ATMOSPHERIC CORROSION ENVIORNMENT[J]. 金属学报, 2014, 50(1): 57-63.
[2] ZHOU Xiaowei,SHEN Yifu. CORROSION BEHAVIOR AND EIS STUDY OF NANOCRYSTALLINE Ni-CeO2 COATINGS IN AN ACID NaCl SOLUTION[J]. 金属学报, 2013, 49(9): 1121-1130.
[3] ZHAO Bo DU Cuiwei LIU Zhiyong LI Xiaogang YANG Jike LI Yueqiang. CORROSION BEHAVIOR OF X80 STEEL IN YINGTAN SOIL SIMULATED SOLUTION UNDER DISBONDED COATING[J]. 金属学报, 2012, 48(12): 1530-1536.
[4] WANG Changgang DONG Junhua KE Wei CHEN Nan. EFFCTS OF pH AND Cl CONCENTRATION ON THE CORROSION BEHAVIOR OF COPPER IN BORIC ACID BUFFER SOLUTION[J]. 金属学报, 2011, 47(3): 354-360.
[5] HAN Dong JIANG Yiming DENG Bo ZHANG Lihua ZHANG Wei LI Jin. EFFECT OF AGING TIME ON ELECTROCHEMICAL CORROSION BEHAVIOR OF 2101 DUPLEX STAINLESS STEEL[J]. 金属学报, 2009, 45(8): 919-923.
[6] ;. SURFACE MODIFICATION OF 316L STAINLESS STEEL BY HIGH CURRENT PULSED ELECTRON BEAM Part II Corrosion behaviors in the simulated body fluid[J]. 金属学报, 2007, 42(1): 71-76 .
[7] SU Jingxin; ZHANG Zhao; CAO Fahe; ZHANG Jianqing; CAO Chunan. EXFOLIATION CORROSION BEHAVIOR OF T6 TREATED 2090 Al-Li ALLOY IN EXCO SOLUTION AND EIS DURING EXFOLIATION CORROSION EVOLUTION[J]. 金属学报, 2005, 41(9): 974-978 .
No Suggested Reading articles found!