The effect of hydrostatic pressure on the metastable and stable pitting corrosion of API X80 steel was investigated in a simulated deep-sea environment. Cumulative probability distribution analysis of metastable pitting events revealed that hydrostatic pressure promoted the occurrence of metastable pitting corrosion and the transformation of metastable pitting corrosion to stable pitting corrosion. According to the results of scanning Kelvin probe force microscopy tests, pitting corrosion of the test steel originated at the interface between inclusions and the substrate. Combined with finite element analysis, the mechanism by which hydrostatic pressure promoted the occurrence and propagation of stable pitting corrosion of test steel in the simulated deep-sea environment was explained.
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1 December 2021
Research Article|
October 04 2021
Influence of Hydrostatic Pressure on the Pitting Corrosion Behavior of API X80 Steel Available to Purchase
Chengcheng Xu;
Chengcheng Xu
*National Center for Materials Service Safety, University of Science and Technology Beijing, Beijing, China 100083.
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Meng Yu;
Meng Yu
*National Center for Materials Service Safety, University of Science and Technology Beijing, Beijing, China 100083.
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Yuxiang Zhu;
Yuxiang Zhu
*National Center for Materials Service Safety, University of Science and Technology Beijing, Beijing, China 100083.
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Ying Jin;
Ying Jin
*National Center for Materials Service Safety, University of Science and Technology Beijing, Beijing, China 100083.
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Lei Wen;
Lei Wen
‡
*National Center for Materials Service Safety, University of Science and Technology Beijing, Beijing, China 100083.
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Dongbai Sun
Dongbai Sun
‡
**School of Materials, Sun Yat-Sen University, Guangzhou, China 510275.
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Online ISSN: 1938-159X
Print ISSN: 0010-9312
© 2021, AMPP
2021
CORROSION (2021) 77 (12): 1299–1310.
Citation
Chengcheng Xu, Meng Yu, Yuxiang Zhu, Ying Jin, Lei Wen, Dongbai Sun; Influence of Hydrostatic Pressure on the Pitting Corrosion Behavior of API X80 Steel. CORROSION 1 December 2021; 77 (12): 1299–1310. https://doi.org/10.5006/3810
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