Journal ArticleDOI
Synergistic Fluoropolymer Coating on Magnesium Alloys
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TLDR
In this paper, the synergistic fluoropolymer self-lubrication coatings on magnesium alloys were studied and the hardness reached 600HV, the dynamic coefficient of friction of the coating was less than 0.15 and the corrosion resistance was also excellent to endure 5% neutral salt spray test for 500 hours.Abstract:
The synergistic fluoropolymer self-lubrication coatings on magnesium alloys were studied. Magnesium alloy was firstly treated by electroless nickel plating. Then micropores of electroless nickel plating layer was enlarged. Then the fluoropolymer particles were infused into micropores, precise vacuum heat treatment ensured thorough infusion with fluoropolymer, finally the synergistic coating was formed. The hardness of the coating reached 600HV, the dynamic coefficient of friction of the coating was less than 0.15, and the low coefficient of friction could be kept during a long duration wear to realize the permanent dry lubrication. The corrosion resistance was also excellent to endure 5% neutral salt spray test for 500 hours. Also the structure and composition of the coating were observed and studied.read more
Citations
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Journal ArticleDOI
Corrosion-Resistant Electrochemical Platings on Magnesium Alloys: A State-of-the-Art Review
TL;DR: A state-of-the-art review of aqueous plating systems for magnesium alloys can be found in this paper, where the merits and demerits of existing plating techniques are discussed.
Book ChapterDOI
Corrosion-resistant electrochemical plating of magnesium (Mg) alloys
TL;DR: In this article, the performance assessment of various plated coatings upon magnesium alloys is discussed, along with the general pros and cons of plating techniques, and aqueous electrochemical plating systems are discussed.
Book ChapterDOI
Electroless and Electrochemical Deposition of Metallic Coatings on Magnesium Alloys Critical Literature Review
TL;DR: A critical review pertaining to surface treatments on magnesium alloys was published in 2002 (Gray & Luan, 2002). Two years later, another review paper on the same subject was published (Natarajan et al., 2004).
References
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Patent
Method of forming coating film of fluororesin by physical vapor deposition
TL;DR: In this paper, it was shown that it is best to use a low molecular weight fluororesin powder obtained by heating a high molecular weight polytetrafluoroethylene in presence of a fluorine source and precipitating the molecular weight reduced polymer from the reaction gas.