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INTERACTION OF MECHANICAL AND ELECTROCHEMICAL FACTORS DURING CORROSION-FATIGUE OF FE-26CR-1MO STAINLESS-STEEL IN 1M H2SO4 SOLUTION
J. Q. Wang; J. Li; Z. Y. Zhu; W. Ke; Q. S. Zang; Z. G. Wang
1995
发表期刊Journal of Materials Science & Technology
ISSN1005-0302
卷号11期号:3页码:181-186
摘要The cyclic plastic straining electrode technique has been used to investigate the transient electrochemical behaviour of Fe-26Cr-1Mo stainless steel in 1M H2SO4 solution at a passive potential. The influence of plastic strain amplitude and plastic strain rate on the dissolution current response was analysed. The experimental results showed that the transient current was dependent on the competitive process of the surface film rupture and repassivation of the new surface. The high plastic strain amplitude and the high plastic strain rate caused a change of electrochemical activity of specimen surface. In the condition of low strain amplitude and strain rate:, the characteristics of current response was mainly relative to the process of new surface repassivation. The competition kinetics has been analysed through the comparison of plastic strain rate and repassivating rate.
部门归属chinese acad sci,inst met res,state key lab fatigue & fracture mat,shenyang 110015,peoples r china.;wang, jq (reprint author), chinese acad sci,inst corros & protect met,corros sci lab,shenyang 110015,peoples r china
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WOS记录号WOS:A1995RT53100005
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文献类型期刊论文
条目标识符http://ir.imr.ac.cn/handle/321006/38687
专题中国科学院金属研究所
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GB/T 7714
J. Q. Wang,J. Li,Z. Y. Zhu,et al. INTERACTION OF MECHANICAL AND ELECTROCHEMICAL FACTORS DURING CORROSION-FATIGUE OF FE-26CR-1MO STAINLESS-STEEL IN 1M H2SO4 SOLUTION[J]. Journal of Materials Science & Technology,1995,11(3):181-186.
APA J. Q. Wang,J. Li,Z. Y. Zhu,W. Ke,Q. S. Zang,&Z. G. Wang.(1995).INTERACTION OF MECHANICAL AND ELECTROCHEMICAL FACTORS DURING CORROSION-FATIGUE OF FE-26CR-1MO STAINLESS-STEEL IN 1M H2SO4 SOLUTION.Journal of Materials Science & Technology,11(3),181-186.
MLA J. Q. Wang,et al."INTERACTION OF MECHANICAL AND ELECTROCHEMICAL FACTORS DURING CORROSION-FATIGUE OF FE-26CR-1MO STAINLESS-STEEL IN 1M H2SO4 SOLUTION".Journal of Materials Science & Technology 11.3(1995):181-186.
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