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Journal ArticleDOI

Corrosion resistance of a superhydrophobic micro-arc oxidation coating on Mg-4Li-1Ca alloy

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TLDR
In this paper, a micro-arc oxidation (MAO)/zinc stearate (ZnSA) composite coating was fabricated via MAO processing and subsequent sealing with electrodeposition of a superhydrophobic ZnSA.
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This article is published in Journal of Materials Science & Technology.The article was published on 2017-11-01. It has received 81 citations till now. The article focuses on the topics: Superhydrophobic coating & Coating.

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Science and Engineering of Superhydrophobic Surfaces: Review of Corrosion Resistance, Chemical and Mechanical Stability

TL;DR: In this article, an overview of superhydrophobic surfaces (SHS) is provided, and then their fabrication methods discussed, and the corrosion resistance of these SHS fabricated by various methods and their chemical stability and mechanical stability are reviewed.
Journal ArticleDOI

Layered double hydroxide coatings on magnesium alloys: A review

TL;DR: In this paper, a review of synthetic methods of LDH coatings and LDH-based composite coatings on magnesium alloys is presented, focusing on self-healing, biocompatible and self-cleaning LDH based composite coatingings.
Journal ArticleDOI

Characterization, Bioactivity and Antibacterial Properties of Copper-Based TiO2 Bioceramic Coatings Fabricated on Titanium

Salih Durdu
- 20 Dec 2018 - 
TL;DR: In this paper, the micro-arc oxidation (MAO) and physical vapor deposition-thermal evaporation (PVD-TE) techniques were combined for dental implant applications.
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Superhydrophobic coatings for corrosion protection of magnesium alloys

TL;DR: A review of the current research status of super-hydrophobic coating on Mg alloys can be found in this paper, where a number of strategies have been introduced to develop a super-phobic coating.
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Review of the atmospheric corrosion of magnesium alloys

TL;DR: In this article, the traditional gravimetric method can evaluate effectively the corrosion behavior of Mg alloys, and it is shown that the corrosion rate increases with relative humidity (RH) and concentrations of aggressive species such as chloride ions.
References
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Strategies to improve the corrosion resistance of microarc oxidation (MAO) coated magnesium alloys for degradable implants: Prospects and challenges

TL;DR: In this article, a detailed review of various strategies to improve the corrosion resistance of microarc oxidation (MAO) coatings on Mg/Mg alloys is presented.
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Anodizing Treatments for Magnesium Alloys and Their Effect on Corrosion Resistance in Various Environments

TL;DR: In this paper, the authors summarized the existing fundamental studies and technical developments of anodizing of magnesium alloys, and concluded that new anodising processes based on electrolytic plasma anodization that convert the surface of a magnesium alloy into a hard ceramic coating in an electrolytic bath using high energy electric discharges can offer improved wear and corrosion resistance.
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Facile fabrication of superhydrophobic surface with excellent mechanical abrasion and corrosion resistance on copper substrate by a novel method.

TL;DR: The potentiodynamic polarization and electrochemical impedance spectroscopy test shows that the as-prepared superhydrophobic surface has excellent corrosion resistance that can provide effective protection for the bare Cu substrate.
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A Review on Casting Magnesium Alloys: Modification of Commercial Alloys and Development of New Alloys

TL;DR: In this article, the research and development status of casting magnesium alloys including the commercial casting alloys and the new types casting alloy are reviewed, with more attention to microstructure and mechanical properties of modified-AZ91, AM60 and WE43 alloys with various additions.
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One-Step Electrodeposition Process To Fabricate Corrosion-Resistant Superhydrophobic Surface on Magnesium Alloy

TL;DR: Potentiodynamic polarization and electrochemical impedance spectroscopy measurements demonstrated that the superhydrophobic surface greatly improved the corrosion properties of magnesium alloy in 3.5 wt % aqueous solutions of NaCl, Na2SO4, NaClO3, and NaNO3.
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