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Research Progress on Corrosion-Resistant Micro-Arc Oxidation Superhydrophobic Composite Film Layers
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Abstract:
Metallic materials have a wide range of applications in industry, but corrosion of metallic
materials can significantly reduce service life. Micro-arc oxidation (MAO) superhydrophobic film
layer shows significant corrosion resistance, waterproofing and other characteristics; industrial applications
are particularly suitable for maintaining clean, dirt-resistant occasions, such as automotive
parts, building materials, ships, etc. The article mainly reviews the method of preparing superhydrophobic
composite coatings based on micro-arc oxidation coatings to improve the defects of
traditional superhydrophobic coatings, such as poor bonding with the substrate. Three types of micro-
arc oxidation superhydrophobic composite film preparation methods are highlighted: adjustment
of micro-arc oxidation process parameters (electrical parameters, electrolyte, additives), surface-
covered composite film preparation methods (sol-gel, coating, self-assembly), physicochemical
reaction composite film preparation methods (in-situ growth, hydrothermal, solution immersion,
electrochemical deposition), as well as several other methods (physical vapour phase deposition,
self-plating, laser labelling). deposition, self-templating, laser marking) are discussed to explore the
characteristics of various preparation methods, and at the same time, the current defects of corrosion-
resistant micro-arc oxidized superhydrophobic composite coatings are summarized, and the
development direction of future research is given.
Bentham Science Publishers Ltd.
Title: Research Progress on Corrosion-Resistant Micro-Arc Oxidation Superhydrophobic Composite Film Layers
Description:
Abstract:
Metallic materials have a wide range of applications in industry, but corrosion of metallic
materials can significantly reduce service life.
Micro-arc oxidation (MAO) superhydrophobic film
layer shows significant corrosion resistance, waterproofing and other characteristics; industrial applications
are particularly suitable for maintaining clean, dirt-resistant occasions, such as automotive
parts, building materials, ships, etc.
The article mainly reviews the method of preparing superhydrophobic
composite coatings based on micro-arc oxidation coatings to improve the defects of
traditional superhydrophobic coatings, such as poor bonding with the substrate.
Three types of micro-
arc oxidation superhydrophobic composite film preparation methods are highlighted: adjustment
of micro-arc oxidation process parameters (electrical parameters, electrolyte, additives), surface-
covered composite film preparation methods (sol-gel, coating, self-assembly), physicochemical
reaction composite film preparation methods (in-situ growth, hydrothermal, solution immersion,
electrochemical deposition), as well as several other methods (physical vapour phase deposition,
self-plating, laser labelling).
deposition, self-templating, laser marking) are discussed to explore the
characteristics of various preparation methods, and at the same time, the current defects of corrosion-
resistant micro-arc oxidized superhydrophobic composite coatings are summarized, and the
development direction of future research is given.
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