A new insight on the corrosion behavior and mechanism of martensitic steel

被引:2
|
作者
Gao, Feng [1 ]
Yang, Caifu [1 ]
Li, Jian [1 ]
Zhou, Naipeng [1 ]
Luo, Xiaobing [1 ]
Chai, Feng [1 ]
机构
[1] Cent Iron & Steel Res Inst, Dept Struct Steels, Beijing 100081, Peoples R China
关键词
Martensitic steel; Immersion corrosion; Strong acidic environment; Corrosion behavior and mechanism; BOTTOM PLATE ENVIRONMENT; FERRITE-PEARLITE STEEL; LOW-CARBON STEEL; LOW-ALLOY STEEL; ELECTROCHEMICAL CORROSION; RESISTANCE; MICROSTRUCTURE; MO; OXIDATION; STRESS;
D O I
10.1016/j.matdes.2024.113066
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The corrosion performance of martensitic steel remains a matter of dispute, with no consensus on whether it exhibits heightened or diminished corrosion resistance. In this study, the corrosion behavior and mechanism of martensitic steel were systematically investigated by simulating a cargo oil tank environment. The results indicate that under strong acidic conditions, the corrosion rate of martensite (1.1404 mm/y) is significantly higher than that of ferrite-pearlite (0.7430 mm/y) due to its increased dislocation density and internal stress. Additionally, the presence of high-energy defects provides abundant active sites for the redeposition of Cubearing particles, while their uneven distribution further exacerbates corrosion. Therefore, we propose a competitive mechanism that governs the corrosion behavior of martensite, complementing the understanding of its behavior and mechanism.
引用
收藏
页数:12
相关论文
共 50 条
  • [31] Corrosion behavior of ZrN coated ferritic/martensitic steel in liquid lead-bismuth eutectic
    Zhu, Changda
    Liu, Guiliang
    Yu, Baohua
    Chen, Qingsong
    Zhang, Wei
    Yang, Jian
    Deng, Jiuguo
    Zhong, Yilong
    Liu, Ning
    Yang, Jijun
    NUCLEAR MATERIALS AND ENERGY, 2023, 36
  • [32] Effect of microstructure on the corrosion-friction behavior of low-carbon martensitic stainless steel
    Zhang, Tingyu
    Zhou, Biao
    Wei, Suxin
    Wang, Yanli
    Zhang, Shenghua
    TRIBOLOGY INTERNATIONAL, 2024, 194
  • [33] Effect of Elemental Sulfur on Corrosion Behavior of Super 13Cr Martensitic Stainless Steel
    Zhu, Shidong
    Ma, Haixia
    Li, Jinling
    Yang, Zhigang
    MECHATRONICS ENGINEERING, COMPUTING AND INFORMATION TECHNOLOGY, 2014, 556-562 : 162 - +
  • [34] Study on corrosion behavior of China low activation ferritic/martensitic steel in static liquid lithium
    Zhang, D. H.
    Zuo, G. Z.
    Meng, X. C.
    Yang, G. P.
    Cao, B.
    Liao, H. B.
    Zhang, L.
    Hu, J. S.
    NUCLEAR MATERIALS AND ENERGY, 2024, 38
  • [35] Structural modifications and corrosion behavior of martensitic stainless steel nitrided by plasma immersion ion implantation
    Figueroa, CA
    Alvarez, F
    Zhang, Z
    Collins, GA
    Short, KT
    JOURNAL OF VACUUM SCIENCE & TECHNOLOGY A, 2005, 23 (04): : 693 - 698
  • [36] CORROSION BEHAVIOR OF BETA AND MARTENSITIC AL BRASSES
    CELIS, JP
    ROOS, JR
    TERWINGHE, F
    JOURNAL OF THE ELECTROCHEMICAL SOCIETY, 1983, 130 (12) : 2314 - 2320
  • [37] Deeper insight into FAC corrosion mechanism
    Liu, Yingwei
    Wang, Zhe
    Liu, Chuang
    Ma, Jingming
    ANTI-CORROSION METHODS AND MATERIALS, 2021, 68 (06) : 545 - 554
  • [38] Study of corrosion behavior and mechanism of carbon steel in the presence of Chlorella vulgaris
    Liu, Hongwei
    Xu, Dake
    Dao, Anh Quang
    Zhang, Guoan
    Lv, Yalin
    Liu, Hongfang
    CORROSION SCIENCE, 2015, 101 : 84 - 93
  • [39] High Temperature Oxidation Behavior of New Martensitic Heat-Resistant Steel
    Bao, Ziming
    Han, Renheng
    Zhu, Yanqing
    Li, Hong
    Li, Ning
    Tang, Ming
    Zhang, Hexin
    Zhao, Chengzhi
    MATERIALS SCIENCE-MEDZIAGOTYRA, 2022, 28 (02): : 164 - 170
  • [40] The effect of heat treatment on mechanical properties and corrosion behavior of AISI420 martensitic stainless steel
    Isfahany, A. Nasery
    Saghafian, H.
    Borhani, G.
    JOURNAL OF ALLOYS AND COMPOUNDS, 2011, 509 (09) : 3931 - 3936