Research of microorganism corrosion properties of 2024-T31 aluminum-magnesium alloy in oil-water system

被引:13
作者
Cui Y.-Y. [1 ]
Li J. [1 ]
Ding Q.-M. [1 ]
机构
[1] Airport College, Civil Aviation University of China, Tianjin
关键词
Electrodes - Microorganisms - Biofilms - Chemical analysis - Corrosion rate - Aluminum corrosion - Magnesium alloys - Corrosion protection - Surface analysis - Corrosive effects - Localized corrosion;
D O I
10.1155/2017/5041347
中图分类号
学科分类号
摘要
The surface analysis techniques and chemical technical means (polarization curves and AC impedance technique) were applied to research the corrosion characteristics of microorganisms SRB of 2024-T31 aluminum-magnesium alloy in the oil-water system, and the corrosion mechanism was finally analyzed. The results showed that SRB accelerate the corrosion process and cause uneven pitting on the surface of the metal matrix. Passive and biological films control the corrosion of the metal substrate in bacterial oil-water system. In the initial stage of immersion, a loose and uneven biofilm formed on the surface of substrate which accelerated its corrosion. In the midterm, the effect of biofilm gradually weakened while the protective effect of the passive film grew more insistently; the rate of corrosion slowed down. In the later period, localized corrosion cell of large cathode/small anode formed on the surface of the substrate which accelerates the corrosion. © 2017 Yan-yu Cui et al.
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共 25 条
[21]  
Liu W., Chang X., Zhang Y., Et al., Stress corrosion mechanism and researchmethod of aluminum alloy, Corrosion Science and Protection Technology, 25, 1, pp. 1-73, (2013)
[22]  
Zhao X., Effects and control of sulfate reducing bacteria on corrosion behavior ofmarine steel, China Academy of Sciences, 5, pp. 72-74, (2007)
[23]  
Zhu R., Na J., Guo S., Et al., Polarization behavior of J55 casing steel in presence of sulfate reducing bacteria, Corrosion and Protection, 22, 4, pp. 147-172, (2001)
[24]  
Li S., Sun J., Liu J., Study on microbial corrosion of aluminum alloy in fuel system, Proceedings of the China Materials Conference, pp. 98-987, (2000)
[25]  
Wan Y., Zhang D., Liu H., Li Y., Hou B., Influence of sulphate-reducing bacteria on environmental parameters and marine corrosion behavior of Q235 steel in aerobic conditions, Electrochimica Acta, 55, 5, pp. 1528-1534, (2010)