The effect of nanosized NbC precipitates on electrochemical corrosion behavior of high strength low -alloy steel in 3.5%NaC1 solution
Li, Jia; Wu, Junsheng; Wang, Zihao; Zhang, Shiqi; Wu, Xiaoguang; Huang, Yunhua; Li, Xiaogang
刊名INTERNATIONAL JOURNAL OF HYDROGEN ENERGY
2017
卷号42期号:34页码:22175-22184
ISSN号0360-3199
英文摘要The effect of nanosized NbC precipitates on electrochemical corrosion behavior of high strength low-alloy (HSLA) steels in 3.5%NaC1 solution has been investigated by the means of precipitate modulation, microstructure observation, electrochemical and immersion tests. The results showed that NbC precipitates markedly enhance the corrosion resistance of the H-contained steel, and the mechanism is that the plentiful and highly dispersed nanosized NbC particles acting as massive and effective hydrogen traps play a decisive role in the resistance to hydrogen activated corrosion. Moreover, it is evident that the inhibiting effect is related with the amount, size and distribution of the precipitates, and the optimized microstructures and precipitated phases improve the mechanical properties and resistance to hydrogen activated corrosion of HSLA steel. (C)2017 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
公开日期2017-12-25
内容类型期刊论文
源URL[http://ir.nimte.ac.cn/handle/174433/13673]  
专题2017专题
推荐引用方式
GB/T 7714
Li, Jia,Wu, Junsheng,Wang, Zihao,et al. The effect of nanosized NbC precipitates on electrochemical corrosion behavior of high strength low -alloy steel in 3.5%NaC1 solution[J]. INTERNATIONAL JOURNAL OF HYDROGEN ENERGY,2017,42(34):22175-22184.
APA Li, Jia.,Wu, Junsheng.,Wang, Zihao.,Zhang, Shiqi.,Wu, Xiaoguang.,...&Li, Xiaogang.(2017).The effect of nanosized NbC precipitates on electrochemical corrosion behavior of high strength low -alloy steel in 3.5%NaC1 solution.INTERNATIONAL JOURNAL OF HYDROGEN ENERGY,42(34),22175-22184.
MLA Li, Jia,et al."The effect of nanosized NbC precipitates on electrochemical corrosion behavior of high strength low -alloy steel in 3.5%NaC1 solution".INTERNATIONAL JOURNAL OF HYDROGEN ENERGY 42.34(2017):22175-22184.
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