简介概要

Corrosion behavior and characteristics of the product film of API X100 steel in acidic simulated soil solution

来源期刊:International Journal of Minerals Metallurgy and Materials2016年第2期

论文作者:Cui-wei Du Tian-liang Zhao Zhi-yong Liu Xiao-gang Li Da-wei Zhang

文章页码:176 - 183

摘    要:The short-term corrosion behavior of API X100 steel in an acidic simulated soil was investigated by electrochemical measurements and soaking experiments,followed by corrosion morphology observations and X-ray photoelectron spectroscopy analyses.The results show that X100 steel exhibits an obvious pitting susceptibility in an acidic soil environment.Pits nucleate after approximately 10 h of immersion.Along with the nucleation and growth of the pits,the charge-transfer resistance and open-circuit potential first increase sharply,then decrease slowly,and eventually reach a steady state.The maxima of the charge-transfer resistance and open-circuit potential are attained at approximately 10 h.The evolution of the electrochemical process is confirmed by the analysis of the product film.The product film exhibits a porous and loose structure and could not protect the substrate well.The product film is primarily composed of ferrous carbonate and ferrous hydroxide(Fe(OH)2).The concentration of Fe(OH)2 in the product film increases from the inside to the outside layer.

详情信息展示

Corrosion behavior and characteristics of the product film of API X100 steel in acidic simulated soil solution

Cui-wei Du1,2,Tian-liang Zhao1,2,Zhi-yong Liu1,2,Xiao-gang Li1,2,Da-wei Zhang1,2

1. Corrosion and Protection Center, University of Science and Technology Beijing2. Key Laboratory of Chinese Ministry of Education for Corrosion and Prevention, University of Science and Technology Beijing

摘 要:The short-term corrosion behavior of API X100 steel in an acidic simulated soil was investigated by electrochemical measurements and soaking experiments,followed by corrosion morphology observations and X-ray photoelectron spectroscopy analyses.The results show that X100 steel exhibits an obvious pitting susceptibility in an acidic soil environment.Pits nucleate after approximately 10 h of immersion.Along with the nucleation and growth of the pits,the charge-transfer resistance and open-circuit potential first increase sharply,then decrease slowly,and eventually reach a steady state.The maxima of the charge-transfer resistance and open-circuit potential are attained at approximately 10 h.The evolution of the electrochemical process is confirmed by the analysis of the product film.The product film exhibits a porous and loose structure and could not protect the substrate well.The product film is primarily composed of ferrous carbonate and ferrous hydroxide(Fe(OH)2).The concentration of Fe(OH)2 in the product film increases from the inside to the outside layer.

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