Pitting and galvanic corrosion behavior of stainless steel with weld in wet-dry environment containing Cl-

被引:0
|
作者
Cui Lin1
机构
基金
中国国家自然科学基金;
关键词
stainless steel; weld; wet-dry environment; chlorion;
D O I
暂无
中图分类号
TG172 [各种类型的金属腐蚀];
学科分类号
080503 ;
摘要
Accelerated corrosion test of stainless steel with weld was carried out to investigate the corrosion behavior under the wet-dry cyclic condition in the atmosphere containing Cl?. In the surface morphology, corrosion products were analyzed by metal- lographic observation, scanning electron microscopy (SEM) and X-ray diffraction (XRD). The results show that the damage to stainless steel with weld in the atmosphere containing Cl? is due to localized corrosion, especially pitting and galvanic corrosion. Weld acts as the anode, whereas matrix acts as the cathode in the corrosion process. The pitting corrosion, including the nucleation and growth of a stable pit, is promoted by the presence of wet-dry cycles, especially during the drying stage. Pits centralizing in weld are found to be grouped together like colonies, with a number of smaller pits surrounding a larger pit. The composition of the corro- sion products is Fe2O3, Cr2O3, Fe3O4, NiCrO4, etc.
引用
收藏
页码:517 / 522
页数:6
相关论文
共 50 条
  • [1] Pitting and galvanic corrosion behavior of stainless steel with weld in wet-dry environment containing Cl-
    Lin, Cui
    Li, Xiaogang
    Dong, Chaofang
    JOURNAL OF UNIVERSITY OF SCIENCE AND TECHNOLOGY BEIJING, 2007, 14 (06): : 517 - 522
  • [2] AC impedance monitoring of pitting corrosion of stainless steel under a wet-dry cyclic condition in chloride-containing environment
    Cruz, RPV
    Nishikata, A
    Tsuru, T
    CORROSION SCIENCE, 1996, 38 (08) : 1397 - 1406
  • [3] Pitting corrosion of sensitised type 304 stainless steel under wet-dry cycling condition
    Cheng, Cong-Qian
    Klinkenberg, Laura-Isabell
    Ise, Yaoki
    Zhao, Jie
    Tada, Eiji
    Nishikata, Atsushi
    CORROSION SCIENCE, 2017, 118 : 217 - 226
  • [4] Pitting corrosion mechanism of stainless steels under wet-dry exposure in chloride-containing environments
    Cruz, RPV
    Nishikata, A
    Tsuru, T
    CORROSION SCIENCE, 1998, 40 (01) : 125 - 139
  • [5] Corrosion Behavior of Sn-Bearing Steel under Wet/Dry Cyclic Environments Containing Cl-
    Sugae, Kiyonobu
    Kamimura, Takayuki
    Miyuki, Hideaki
    Kudo, Takeo
    MATERIALS TRANSACTIONS, 2018, 59 (05) : 779 - 786
  • [6] INVESTIGATION ON PITTING CORROSION BEHAVIOR OF ULTRAFINE-GRAINED 304L STAINLESS STEEL IN Cl- CONTAINING SOLUTION
    Piao, Nan
    Chen, Ji
    Yin, Chengjiang
    Sun, Cheng
    Zhang, Xinghang
    Wu, Zhanwen
    ACTA METALLURGICA SINICA, 2015, 51 (09) : 1077 - 1084
  • [7] Investigation on pitting corrosion behavior of ultrafine-grained 304L stainless steel in Cl- containing solution
    Piao, Nan
    Chen, Ji
    Yin, Chengjiang
    Sun, Cheng
    Zhang, Xinghang
    Wu, Zhanwen
    Jinshu Xuebao/Acta Metallurgica Sinica, 2015, 51 (09): : 1077 - 1084
  • [8] Hydrogen permeation behavior and corrosion monitoring atmospheric of steel in cyclic wet-dry environment
    Zheng, C.
    Huang, Y.
    Huo, C.
    Yu, Q.
    MATERIALS AND CORROSION-WERKSTOFFE UND KORROSION, 2007, 58 (09): : 696 - 700
  • [9] Stress corrosion cracking behavior of rusted X100 steel under the combined action of Cl- and HSO3- in a wet-dry cycle environment
    Gong, Ke
    Wu, Ming
    Liu, Guangxin
    CORROSION SCIENCE, 2020, 165 (165)
  • [10] The corrosion behavior of steel exposed to a DC electric field in the simulated wet-dry cyclic environment
    Dai, Nianwei
    Chen, Qimeng
    Zhang, Junxi
    Zhang, Xin
    Ni, Qingzhao
    Jiang, Yiming
    Li, Jin
    MATERIALS CHEMISTRY AND PHYSICS, 2017, 192 : 190 - 197