Preparation and performance study of self-repairing coating with superhydrophobic properties

被引:0
|
作者
机构
[1] Fu, Gaojie
[2] Dou, Peng
[3] Xie, Chenyan
[4] Wei, Zeyi
[5] Wang, Jiaqi
[6] Yuan, Lixin
[7] Wu, Dongfang
[8] Shen, Bin
关键词
Corrosion resistance - Corrosive effects - Hydrogen bonds - Steel corrosion;
D O I
10.1016/j.apsusc.2024.161946
中图分类号
学科分类号
摘要
Electricity has become one of the most important energy sources required for the operation of today's society, and related electrical facilities are constantly being constructed. However, the environment in which electrical facilities are located is complex, how to protect their key components from corrosion has become an urgent problem to be solved. In this study, a kind of superhydrophobic coating with self-repairing properties was prepared based on polycarbonate polyurethane, which can be used to some extent as an anti-corrosion coating in electrical systems. A series of polyurethanes were prepared by adjusting the ratio of various crosslinkers, and the formula that can produce the best comprehensive performance was determined. Specifically, due to the action of disulfide bonds and hydrogen bonds, the prepared polyurethane can achieve a maximum fracture strength of 7.99 MPa and a fracture elongation of 749.19 %, while also having a self-repairing efficiency of 90.86 %. By spraying modified SiO2 to the surface, the polyurethane surface has excellent superhydrophobic properties, with a maximum WCA of 169.67°, and still maintains superhydrophobic properties after being worn for 2100 cm by 800 mesh sandpaper. And the coating also has excellent anti-corrosion property with protecting Q235 metal steel from corrosion in NSS test for 120 h. It has shown great potential in the anti-corrosion application of metal materials in electrical systems. © 2024 Elsevier B.V.
引用
收藏
相关论文
共 50 条
  • [31] Self-repairing codes
    Oggier, Frederique
    Datta, Anwitaman
    COMPUTING, 2015, 97 (02) : 171 - 201
  • [32] Self-repairing plastic
    不详
    MATERIALS PERFORMANCE, 2002, 41 (05) : 12 - 13
  • [33] Self-repairing robots
    不详
    R&D MAGAZINE, 2006, 48 (12): : 6 - 6
  • [34] Preparation of oil soluble nano-TiO2 and its self-repairing performance
    油溶性纳米二氧化钛的制备及其自修复性能
    Guan, Shuzhe (254425698@qq.com), 1833, Fine Chemicals (37): : 1833 - 1838
  • [35] An experimental study on a self-repairing modular machine
    Yoshida, E
    Murata, S
    Tomita, K
    Kurokawa, H
    Kokaji, S
    ROBOTICS AND AUTONOMOUS SYSTEMS, 1999, 29 (01) : 79 - 89
  • [36] Preparation and Self-Repairing Properties of Urea Formaldehyde-Coated Epoxy Resin Microcapsules
    Yan, Xiaoxing
    Chang, Yijuan
    Qian, Xingyu
    INTERNATIONAL JOURNAL OF POLYMER SCIENCE, 2019, 2019
  • [37] Performance evaluations of adaptive strategies in self-repairing network
    Tokumitsu, Masahiro
    Ishida, Yoshiteru
    PROCEEDINGS OF THE SEVENTEENTH INTERNATIONAL SYMPOSIUM ON ARTIFICIAL LIFE AND ROBOTICS (AROB 17TH '12), 2012, : 307 - 312
  • [38] Optical and Mechanical Properties of Self-Repairing Pectin Biopolymers
    Pierce, Aidan F.
    Liu, Betty S.
    Liao, Matthew
    Wagner, Willi L.
    Khalil, Hassan A.
    Chen, Zi
    Ackermann, Maximilian
    Mentzer, Steven J.
    POLYMERS, 2022, 14 (07)
  • [39] Preparation and Characterization of a High Strength Self-repairing Galactomannan Hydrogel
    Duan, Jiufang
    Gao, Yuxue
    Huang, Yirong
    Li, Lin
    Jiang, Jianxin
    BIORESOURCES, 2019, 14 (04): : 9853 - 9866
  • [40] Construction of Nano Chiral Molecules and Analysis of Self-Repairing Mechanism of Coating
    Zeng Ding
    Lu Hongyu
    Zhao Tingfeng
    Zhaojin
    Hao Baohong
    INTEGRATED FERROELECTRICS, 2021, 218 (01) : 75 - 82