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教师英文名称:Chengxuequn
博士生导师
毕业院校:北京科技大学
学科:材料学
所在单位:新材料技术研究院
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[1]X. Cheng, Y. Wang, X. Li, et al., Interaction between austein-ferrite phases on passive performance of 2205 duplex stainless steel, Journal of Materials Science and Technology (2018), https://doi.org/10.1016/j.jmst.2018.02.020..
[2]M. Liu, X. Cheng*, X. Li, et al., Effect of carbonation on the electrochemical behavior of corrosion resistance low alloy steel rebars in cement extract solution. Construction and Building Materials, 130(2017) 193-201..
[3]Z. Feng, X. Cheng*., C. Dong, X. Li. Effects of dissolved oxygen on electrochemical and semiconductor properties of 316L stainless steel. Journal of Nuclear Materials, 407(3), pp 171-177, 2010..
[4]Z. Feng, X. Cheng*, C. Dong, X. Li. Passivity of 316L stainless steel in borate buffer solution studied by Mott-Schottky analysis, atomic absorption spectrometry and X-ray photoelectron spectroscopy. Corrosion Science, 52(11), pp 3646-3653, 2010..
[5]W. Wu, X. Cheng*, H. Hou, et al., Insight into the product film formed on Ni-advanced weathering steel in a tropical marine atmosphere. Applied Surface Science, 436(2018) 80-89..
[6]Y. Wang, X. Cheng* and X. Li, Electrochemical behavior and compositions of passive films formed on the constituent phases of duplex stainless steel without coupling. Electrochemistry Communications, 57(2015) 56-60..
[7]H. Tian, X. Cheng*, Y. Wang, et al., Effect of Mo on interaction between / phases of duplex stainless steel. Electrochimica Acta, 267(2018) 255-268..
[8]X. Cheng, Z. Feng, C. Li, C. Dong, X. Li. Investigation of oxide film formation on 316L stainless steel in high-temperature aqueous environments. Electrochimica Acta, 56(17), pp 5860-5865, 2011..
[9]X. Cheng, Z. Jin, M. Liu, X. Li, Optimizing the nickel content in weathering steels to enhance their corrosion resistance in acidic atmosphere, Corrosion Science. 115 (2017) 135-142..
[10]X. Cheng, Y. Wang, C. Dong, X. Li, The beneficial galvanic effect of the constituent phases in 2205 duplex stainless steel on the passive films formed in a 3.5% NaCl solution, Corrosion Science. 134(2018) 122-130..
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