XIA Xianchao,NIE Jingjing,SUN Jingli,YAO Wende,CAI Weibo,WU Lili,ZOU Wenbing,YUAN Yong,ZHANG Lisong,WANG Xiaoxue.Preparation and Properties of Superhydrophobic and Antibacterial Coating Based on Phosphate Chemical Conversion[J],54(6):115-124
Preparation and Properties of Superhydrophobic and Antibacterial Coating Based on Phosphate Chemical Conversion
Received:April 27, 2024  Revised:August 19, 2024
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DOI:10.16490/j.cnki.issn.1001-3660.2025.06.010
KeyWord:Mg alloys  corrosion resistance  antibacterial coating  chemical conversion  superhydrophobic coating
                             
AuthorInstitution
XIA Xianchao Shanghai Spaceflight Precision Machinery Institute, Shanghai , China
NIE Jingjing Shanghai Spaceflight Precision Machinery Institute, Shanghai , China
SUN Jingli Shanghai Spaceflight Precision Machinery Institute, Shanghai , China
YAO Wende Shanghai Spaceflight Precision Machinery Institute, Shanghai , China
CAI Weibo Shanghai Spaceflight Precision Machinery Institute, Shanghai , China
WU Lili Shanghai Spaceflight Precision Machinery Institute, Shanghai , China
ZOU Wenbing Shanghai Spaceflight Precision Machinery Institute, Shanghai , China
YUAN Yong Shanghai Spaceflight Precision Machinery Institute, Shanghai , China
ZHANG Lisong Beijing Institute of Space Long March Vehicle, Beijing , China
WANG Xiaoxue Beijing Institute of Space Long March Vehicle, Beijing , China
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Abstract:
      Energy crisis, environmental pollution and other growing environmental problems have caused wide public concern, and energy conservation and emission reduction gradually become consensuses in scientific research and industrial production. As the lightest structural metal, magnesium(Mg) alloys have been widely used in a number of fields such as aviation, spaceflight, high-speed rail and automotive. However, the corrosion resistance of magnesium alloys is extremely poor, which seriously restricts their widespread use. The improvement of corrosion resistance is the key to the large-scale use of Mg alloys in the industrial field. Use of reliable surface protection coatings is an effective method to protect Mg alloys from corrosion. In addition to improving corrosion resistance, diverse service environments put forward more functional requirements for coatings. The warm and humid atmospheric environment of ocean provides favorable conditions. The formation of microbial film will not only accelerate the degradation failure of the coating, but also cause the corrosion of the substrate and shorten the service life of the equipment due to its secretion of organic acids. Therefore, the development of eco-friendly anticorrosion and antibacterial coatings has attracted more and more attention.
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