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Protective coatings on magnesium and its alloys — a critical review

J.E. Gray, +1 more
- 18 Apr 2002 - 
- Vol. 336, Iss: 1, pp 88-113
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TLDR
In this paper, the state of the art in coating and surface modification technologies, applied to magnesium-based substrates for improved corrosion and wear resistance, are discussed, including electrochemical plating, conversion coatings, anodizing, gas phase deposition processes, laser surface alloying/cladding and organic coatings.
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This article is published in Journal of Alloys and Compounds.The article was published on 2002-04-18 and is currently open access. It has received 2240 citations till now. The article focuses on the topics: Magnesium alloy & Conversion coating.

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Citations
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Magnesium and its alloys as orthopedic biomaterials: a review.

TL;DR: A review of the properties, biological performance, challenges and future directions of magnesium-based biomaterials can be found in this paper, where the authors explore the properties and challenges of magnesium biomaterial.
Journal ArticleDOI

Oxidation resistance of graphene-coated Cu and Cu/Ni alloy

TL;DR: Graphene films grown by chemical vapor deposition are demonstrated for the first time to protect the surface of the metallic growth substrates of Cu and Cu/Ni alloy from air oxidation, allowing pure metal surfaces only one atom away from reactive environments.
Journal ArticleDOI

Fundamentals and advances in magnesium alloy corrosion

TL;DR: There remains growing interest in magnesium (Mg) and its alloys, as they are the lightest structural metallic materials Mg alloys have the potential to enable design of lighter engineered systems, including positive implications for reduced energy consumption as mentioned in this paper.
Journal ArticleDOI

Biomedical coatings on magnesium alloys - a review.

TL;DR: The analysis of the literature showed that many studies have focused on calcium phosphate coatings produced either using conversion or deposition methods which were developed for orthopaedic applications, however, the control of phases and the formation of cracks still appear unsatisfactory.
Posted Content

Oxidation resistance of graphene-coated Cu and Cu/Ni alloy

TL;DR: In this paper, the ability of graphene films grown by chemical vapor deposition to protect the surface of the metallic growth substrates of Cu and Cu/Ni alloy from air oxidation was demonstrated.
References
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Journal ArticleDOI

The corrosion protection afforded by rare earth conversion coatings applied to magnesium

TL;DR: In this article, the corrosion protection afforded by cerium, lanthanum and praseodymium conversion coatings formed on pure magnesium and a magnesium alloy, WE43, has been studied using dc polarisation and ac impedance techniques.
Journal ArticleDOI

Platform science and technology for advanced magnesium alloys - A review on the national project supported by a grant-in aid for the Priority Area Research (B) from the Ministry of Education, Culture, Sports, Science and Technology of Japan

TL;DR: The Platform Science and Technology for Advanced Magnesium Alloys (PSME) project as mentioned in this paper was started in 1999 with financial support from the Ministry of Education, Science, and Sports and Culture of Japan.
Journal ArticleDOI

Platform Science and Technology for Advanced Magnesium Alloys

TL;DR: The Platform Science and Technology for Advanced Magnesium Alloys (PSME) project as mentioned in this paper was started in 1999 with financial support from the Ministry of Education, Science, and Sports and Culture of Japan.
Journal ArticleDOI

Corrosion protection of magnesium by electroactive polypyrrole/paint coatings

TL;DR: In this paper, the effect of polypyrrole (PPy) in acrylic paint on corrosion protection of a magnesium alloy was investigated using both salt spray and electrochemical tests.
Journal ArticleDOI

A non-chromate conversion coating for magnesium alloys and magnesium-based metal matrix composites

TL;DR: In this paper, the development of a conversion coating in a stannate bath on magnesium-based ZC71 alloy and on a metal matrix composite (MMC), comprising a ZC 71 alloy matrix and 12 vol% SiC particles, has been studied using weight gain behaviour, measurements of corrosion potential, X-ray diffraction and microscopic examination.
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