ZHENG Qi-kai,SUN Kuo-teng,HUANG Song-qiang,ZHOU Jing-zhong,HE Xue-min,LIU Yi,WU Shuang-jie,ZHOU Ping.Research Progress of Anti-icing Coating Materials and Its Applications in the Protection of Power Materials[J],50(12):282-293
Research Progress of Anti-icing Coating Materials and Its Applications in the Protection of Power Materials
Received:March 18, 2021  Revised:May 17, 2021
View Full Text  View/Add Comment  Download reader
DOI:10.16490/j.cnki.issn.1001-3660.2021.12.027
KeyWord:power materials  anti-icing  deicing  coatings  thermal spraying
                       
AuthorInstitution
ZHENG Qi-kai Liuzhou Bureau, UHV Transmission Company, China Southern Power Grid Co., Ltd., Liuzhou , China
SUN Kuo-teng Liuzhou Bureau, UHV Transmission Company, China Southern Power Grid Co., Ltd., Liuzhou , China
HUANG Song-qiang Liuzhou Bureau, UHV Transmission Company, China Southern Power Grid Co., Ltd., Liuzhou , China
ZHOU Jing-zhong Liuzhou Bureau, UHV Transmission Company, China Southern Power Grid Co., Ltd., Liuzhou , China
HE Xue-min Liuzhou Bureau, UHV Transmission Company, China Southern Power Grid Co., Ltd., Liuzhou , China
LIU Yi Ningbo Institute of Materials Technology and Engineering, Chinese Academy of Sciences, Ningbo , China
WU Shuang-jie Ningbo Institute of Materials Technology and Engineering, Chinese Academy of Sciences, Ningbo , China
ZHOU Ping Ningbo Institute of Materials Technology and Engineering, Chinese Academy of Sciences, Ningbo , China
Hits:
Download times:
Abstract:
      Anti-icing coating materials can effectively reduce the impact of natural icing. The low surface energy or high lubricity enables anti-icing materials to weaken the adhesion strength of ice on the surface of objects under severe cold weather conditions, delay the icing time and reduce the surface icing amount, so anti-icing materials have important practical value in protecting power materials from freezing disaster. Composite surface anti-icing coating materials prepared by the thermal spraying method and active-passive anti-icing methods are the important research focuses of anti-icing application for power materials in the future. However, up to now, the research progress overview of both preparation methods of thermal sprayed composite surface anti-icing coating materials and the protection applications for power materials was seldom reported. In this paper, from the point of view of the combination of superhydrophobic materials and photothermal/electrothermal deicing method, and the composite coatings of superhydrophobic and superlubricating materials for anti-icing and deicing, domestic and international research progress about the preparation and performance of composite anti-icing coatings in recent years was reviewed, and the anti-icing and deicing effects of the composite coatings suitable for thermal spraying were also discussed. Finally, the research progress of superhydrophobic anti-icing coating and composite anti-icing coating on the surface of power materials was discussed, and the application prospects and limitations of thermal sprayed anti-icing coatings were also prospected. It is hoped that further research on composite anti-icing methods can provide guidance for the future development of surface anti-icing coating of power materials.
Close