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Interaction of Mechanics and Electrochemistry for Magnesium Alloys  

Han, En-Hou (Institute of Metal Research, Chinese Academy of Sciences)
Wang, JianQiu (Institute of Metal Research, Chinese Academy of Sciences)
Ke, Wei (Institute of Metal Research, Chinese Academy of Sciences)
Publication Information
Corrosion Science and Technology / v.7, no.5, 2008 , pp. 243-251 More about this Journal
Abstract
Magnesium alloys become popular research topic in last decade due to its light weight and relatively high strength-to-weight ratio in the energy aspiration age. Almost all structure materials are supposed to suspend stress. Magnesium is quite sensitive to corrosive environment, and also sensitive to environmental assisted cracking. However, so far we have the limited knowledge about the environmental sensitive cracking of magnesium alloys. The corrosion fatigue (CF) test was conducted. Many factors' effects, like grain size, texture, heat treatment, loading frequency, stress ratio, strain rate, chemical composition of environment, pH value, relative humidity were investigated. The results showed that all these factors had obvious influence on the crack initiation and propagation. Especially the dependence of CF life on pH value and frequency is quite different to the other traditional structural metallic materials. In order to interpret the results, the electrochemistry tests by polarization dynamic curve and electrochemical impedance spectroscopy were conducted with and without stress. The corrosion of magnesium alloys was also studied by in-situ observation in environmental scanning electron microscopy (ESEM). The corrosion rate changed with the wetting time during the initial corrosion process. The pre-charging of hydrogen caused crack initiated at $\beta$ phase, and with the increase of wetting time the crack propagated, implying that hydrogen produced by corrosion reaction participated in the process.
Keywords
corrosion fatigue; stress corrosion cracking; magnesium alloys; crack initiation crack propagation; frequency; pH value;
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1 J. D. Hanawalt, C. E. Nelson, and J. A. Peloubet, Trans. Am. Inst. Mining Met. Eng., 147, 273 (1942)
2 R. Ambat, N. N. Aung, and W. Zhou, Corros. Sci., 42, 1433 (2000)   DOI   ScienceOn
3 G. Baril and N. Pebere, Corros. Sci., 43, 471 (2001)   DOI   ScienceOn
4 J. H. Nordien, S. Ono, N. Masuko, and K. Nisancioglu, J. Electrochem. Soc., 142, 3320 (1995)   DOI
5 G. Song, A. Atrens, and M. Dargusch, Corros. Sci., 41, 249 (1999)
6 O. Lunder, J. E. Lein, T. Kr. Aune, and K. Nisancioglu, Corrosion, 45, 741 (1989)   DOI
7 C. M. Houston, Eng Fracture Mech,, 8, 315 (1976)   DOI   ScienceOn
8 N. Pebere, C. Riera, and F. Dabosi, Electrochim. Acta, 35, 555 (1990)   DOI   ScienceOn
9 G. Song, A. Atrens, X. Wu, and B. Zhang, Corros. Sci., 40, 1769 (1998)   DOI   ScienceOn
10 N. LeBozec, M. Jonsson, and D. Thierry, Corrosion 60, 356 (2004)   DOI   ScienceOn
11 G. Song, A. Atrens, D. John, X. Wu, and J. Nairn, Corros. Sci., 39, 1981 (1997)   DOI   ScienceOn
12 A. Eliezer, E. M. Gutman, E. Abramov, and Ya. Unigovski, Journal of Light Metals, 1, 179 (2001)   DOI   ScienceOn
13 Jian Chen, Jianqiu Wang, Enhou Han, and Wei Ke, Electrochim. Acta, 52, 3299 (2007)   DOI   ScienceOn
14 Jian Chen, Jianqiu Wang, Enhou Han, and Wei Ke, Corrosion Science, 49, 1625 (2007)   DOI   ScienceOn
15 Romgchang Zeng, Enhou Han, and Wei Ke, Material Sciences Forum, 546, 409 (2007)
16 G. L. Makar and J. Kruger, Inter. Mater. Rev., 38, 138 (1993)   DOI   ScienceOn
17 P. Schmutz, V. Guillaumin, R. S.Lillard, J. A.Lillard, and G. S. Frankel, J. Electrochem. Soc., 150, B99 (2003)   DOI
18 Jian Chen, Jianqiu Wang, Enhou Han, and Wei Ke, Material Sciences Forum, 546, 537 (2007)
19 Jian Chen, Jianqiu Wang, Enhou Han, Junhua Dong, and Wei Ke, Material and Corrosion, 57, 789 (2006)   DOI   ScienceOn
20 Huamao Zhou, Jianqiu Wang, Qishan Zang, Enhou Han, and Wei Ke, Material Sciences Forum, 546, 579 (2007)
21 R. G. Song, C. Blawert, W. Dietzel, and A. Atrens, Materials Science and Engineering: A, 39, 308 (2005)
22 G. Baril, C. Blanc, and N. Pebere, J. Electrochem. Soc., 148, B489 (2001)   DOI
23 L. Fairman and H. Bray, Corros. Sci., 5, 711 (1965)   DOI   ScienceOn
24 S. Mathieu, C. Rapin, J. Steinmetz, and P. Steinmetz, Corros. Sci., 45, 2741 (2003)   DOI   ScienceOn
25 Ya. Unigovski, A. Eliezer, E. Abramov, Y. Snir, and E. M. Gutman, Materials Science and Engineering A, 360, 132 (2003)   DOI   ScienceOn