Properties of Ceramic Oxide Coatings on Magnesium and Titanium Alloys Synthesized in Electrolytic Plasma

The properties of ceramic oxide coatings on magnesium and titanium alloys are examined with electrolytic plasma oxidation. The oxide ceramics protect the alloys against corrosive environments. It is found that the ceramic oxide coatings increase the wear resistance of the alloys by 10–15 times and t...

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Published in:Powder metallurgy and metal ceramics Vol. 54; no. 1-2; pp. 47 - 52
Main Authors: Imbirovich, N. Yu, Klapkiv, M. D., Posuvailo, V. M., Povstyanoi, O. Yu
Format: Journal Article
Language:English
Published: New York Springer US 01-05-2015
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Abstract The properties of ceramic oxide coatings on magnesium and titanium alloys are examined with electrolytic plasma oxidation. The oxide ceramics protect the alloys against corrosive environments. It is found that the ceramic oxide coatings increase the wear resistance of the alloys by 10–15 times and their corrosion resistance by one or two orders of magnitude compared to the starting metal.
AbstractList The properties of ceramic oxide coatings on magnesium and titanium alloys are examined with electrolytic plasma oxidation. The oxide ceramics protect the alloys against corrosive environments. It is found that the ceramic oxide coatings increase the wear resistance of the alloys by 10–15 times and their corrosion resistance by one or two orders of magnitude compared to the starting metal.
Audience Academic
Author Posuvailo, V. M.
Povstyanoi, O. Yu
Klapkiv, M. D.
Imbirovich, N. Yu
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  fullname: Povstyanoi, O. Yu
  email: povstjanoj@mail.ru
  organization: Lutsk National Technical University
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Issue 1-2
Keywords electrolytic plasma oxidation
magnesium alloys
ceramic oxide coating
titanium alloys
corrosion resistance
wear resistance
Language English
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PublicationTitle Powder metallurgy and metal ceramics
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References M. D. Klapkiv, Determining the Physicochemical Parameters in Electrolytic Plasma Synthesis of Ceramic Oxide Coatings on Aluminum Alloys [in Ukrainian], Author’s Abstract of PhD Thesis, Lviv (1996), p. 19.
M. D. Klapkiv, “Modeling the synthesis of ceramic oxide coatings in ‘metal–electrolyte’ discharge channels,” Fiz. Khim. Mekh. Mater., No. 2, 111–116 (1999).
BakovetsVVPolyakovOVDolgovesovaIPElectrolytic-Plasma Anodic Treatment of Metals [in Russian]1990NovosibirskNauka. Sib. Otdel168
M. D. Klapkiv, G. M. Nikiforchin, and V. M. Posuvailo, “Spectroscopic analysis of electrolytic plasma in the synthesis of aluminum oxide,” Fiz. Khim. Mekh. Mater., No. 3, 70–81 (1994).
N. Yu. Povstyana, M. D. Klapkiv, and G. M. Nikiforchin, “Wear resistance of ceramic oxide coatings on zirconium and titanium alloys,” in: Scientific Notes [in Ukrainian], Lutsk Nats. Tekh. Univ., Lutsk (2005), Issue 16, pp. 188–197.
KofstadPAndersonPBKrudtaaOJOxidation of titanium in the temperature range 800–1200°CJ. Less-Common Met.196131899710.1016/0022-5088(61)90001-7
DritsMEMagnesium Alloys: Handbook [in Russian]1978MoscowMetallurgiya232
ME Drits (9678_CR1) 1978
P Kofstad (9678_CR2) 1961; 3
9678_CR7
9678_CR6
9678_CR5
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VV Bakovets (9678_CR3) 1990
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    fullname: P Kofstad
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  volume-title: Electrolytic-Plasma Anodic Treatment of Metals [in Russian]
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    fullname: VV Bakovets
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Snippet The properties of ceramic oxide coatings on magnesium and titanium alloys are examined with electrolytic plasma oxidation. The oxide ceramics protect the...
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SubjectTerms Ceramics
Characterization and Evaluation of Materials
Chemistry and Materials Science
Coatings
Composites
Corrosion (Chemistry)
Glass
Materials Science
Metallic Materials
Natural Materials
Titanium alloys
Title Properties of Ceramic Oxide Coatings on Magnesium and Titanium Alloys Synthesized in Electrolytic Plasma
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