Numerical simulation and deep-sea experiment validation for the cathodic protection design of aluminum alloy framework

被引:0
作者
Duan, Tigang [1 ]
Zhang, Yu [1 ]
Ma, Li [1 ]
Xing, Shaohua [1 ]
Liu, Yanping [2 ]
Peng, Wenshan [1 ]
Zhang, Haibing [1 ]
Hou, Jian [1 ]
机构
[1] Luoyang Ship Mat Res Inst LSMRI, Natl Key Lab Marine Corros & Protect, Qingdao 266237, Peoples R China
[2] 710 R&D Inst, CSSC, Yichang 443000, Peoples R China
关键词
Cathodic protection design; Numerical simulation; Deep sea; Aluminum alloy framework; Deep-sea anticorrosive coating; HYDROSTATIC-PRESSURE; CORROSION; FIELD; ANODES; SYSTEM; STEEL;
D O I
10.1016/j.oceaneng.2024.119268
中图分类号
U6 [水路运输]; P75 [海洋工程];
学科分类号
0814 ; 081505 ; 0824 ; 082401 ;
摘要
Aiming at the deep-sea corrosion protection problem of aluminum alloy framework, the cooperative scheme of sacrificial anode cathodic protection and anticorrosive coating protection was designed, the boundary element numerical simulation was used and subsequently the deep-sea field exposure experiment were carried out to verify the protection effect. The simulation results show that the overall protection potential ranges between -961 mV (vs. Ag/AgCl) and -1004 mV (vs. Ag/AgCl) for the initial stage, indicating a good protective effect of cooperative project. And the 0.5-year protective potential ranges between -959 mV and -1004 mV. On the other hand, the 1000m deep-sea field exposure experiment with 0.5 year was carried out with the in-situ electrochemical monitoring equipment recording the real-time potential variation and the result shows that the overall protective potential displays a range of -996 mV similar to -1046 mV (vs. Ag/AgCl), showing a protection potential difference value of 39 mV from the simulation prediction. The average adhesion strength of deep-sea anticorrosive coating reaches above 8 MPa, remaining the same level as that before the deep-sea experiment. These results prove that the cooperative protective scheme gets a high reliability and can meet the corrosion protection requirement of deep-sea 5A06 aluminum alloy structure.
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页数:9
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共 42 条
  • [21] Influence of Hydrostatic Pressure on the Thermodynamics and Kinetics of Metal Corrosion
    Ma Rongyao
    Zhao Lin
    Wang Changgang
    Mu Xin
    Wei Xin
    Dong Junhua
    Ke Wei
    [J]. ACTA METALLURGICA SINICA, 2019, 55 (02) : 281 - 290
  • [22] Mathiazhagan A., 2010, Int. J. Chem. Eng. Appl, P217, DOI DOI 10.7763/IJCEA.2010.V1.36
  • [23] Synergistic effects of fluid flow and hydrostatic pressure on the degradation of epoxy coating in the simulated deep-sea environment
    Meng, Fandi
    Liu, Li
    Liu, Erhai
    Zheng, Hongpeng
    Liu, Rui
    Cui, Yu
    Wang, Fuhui
    [J]. PROGRESS IN ORGANIC COATINGS, 2021, 159 (159)
  • [24] Mathematical simulation of a cathodic protection system by finite element method
    Montoya, R
    Rendón, O
    Genesca, J
    [J]. MATERIALS AND CORROSION-WERKSTOFFE UND KORROSION, 2005, 56 (06): : 404 - 411
  • [25] Recent advances on organic coating system technologies for corrosion protection of offshore metallic structures
    Olajire, Abass A.
    [J]. JOURNAL OF MOLECULAR LIQUIDS, 2018, 269 : 572 - 606
  • [26] Electrochemical corrosion behavior of high strength steel in simulated deep-sea environment under different hydrostatic pressure
    Peng, Wenshan
    Duan, Tigang
    Hou, Jian
    Guo, Xianglong
    Zhang, Yunhao
    Ma, Li
    Yu, Mingdong
    Xin, Yonglei
    Xing, Shaohua
    Zhang, Haibing
    [J]. JOURNAL OF MATERIALS RESEARCH AND TECHNOLOGY-JMR&T, 2023, 23 : 2301 - 2316
  • [27] Santana-Diaz E, 2003, STRUCT MAT, V13, P175
  • [28] Comparative study on the stress corrosion cracking of X70 pipeline steel in simulated shallow and deep sea environments
    Sun, Feilong
    Ren, Shuai
    Li, Zhong
    Liu, Zhiyong
    Li, Xiaogang
    Du, Cuiwei
    [J]. MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2017, 685 : 145 - 153
  • [29] Cathodic protection criteria of low alloy steel in simulated deep water environment
    Sun Haijing
    Xue Weihai
    Xu Jiaxin
    Chen Guoliang
    Sun Jie
    [J]. ANTI-CORROSION METHODS AND MATERIALS, 2020, 67 (04) : 427 - 434
  • [30] A review of studies on corrosion of metals and alloys in deep-sea environment
    Traverso, Pierluigi
    Canepa, Elisa
    [J]. OCEAN ENGINEERING, 2014, 87 : 10 - 15