Materials Sciences and Applications

Materials Sciences and Applications

ISSN Print: 2153-117X
ISSN Online: 2153-1188
www.scirp.org/journal/msa
E-mail: msa@scirp.org
"Processing-Microstructure Relationships in the Plasma Electrolytic Oxidation (PEO) Coating of a Magnesium Alloy"
written by R. O. Hussein, D. O. Northwood, X. Nie,
published by Materials Sciences and Applications, Vol.5 No.3, 2014
has been cited by the following article(s):
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[1] Micro-arc oxidation of magnesium alloys: a review
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[2] Corrosion and wear resistance of coatings produced on AZ31 Mg alloy by plasma electrolytic oxidation in silicate-based K2TiF6 containing solution: Effect of …
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[3] Fe-, Ni-containing ceramic-like PEO coatings on titanium and aluminum: Comparative analysis of the formation features, composition and ferromagnetic properties
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[4] Influence of voltage on growth and microstructure of oxide coatings on γ-TiAl alloy by cathodic plasma electrolysis in glycerin solution
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[5] Dual-electrolyte fabrication of micro arc oxidation coatings on Ta–12W alloy with enhanced wear resistance
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[6] Systematic Investigation of Silicon Content Effects on the PEO Coatings' Properties on Al–Si Binary Alloys in Silicate-Based and Tungstate-Containing Electrolytes
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[7] Fe and/or Co-containing coatings on titanium: Features of plasma electrolytic formation, composition, and magnetic properties
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[8] Effect of Molybdate on Corrosion Performance of Oxide Coating Produced on 7075 Al Alloy Using PEO
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[9] The influence of alloy microstructure on corrosion resistance and other properties of coatings formed by microarc oxidation
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[10] An Investigation of the Microstructure and Oil Retention of Electrolyte Jet Plasma Oxidation (EJPO) Coating
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[11] Research progress in the application of optical emission spectroscopy in metal microarc oxidation surface treatment
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[12] Toward tailoring the degradation rate of magnesium-based biomaterials for various medical applications: Assessing corrosion, cytocompatibility and immunological …
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[13] Effect of Power Duty Cycle on Plasma Electrolytic Oxidation of A356-Nb 2 O 5 Metal Matrix Composites
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[14] Plasma Electrolytic Oxidation Ceramic Coatings on Zirconium (Zr) and ZrAlloys: Part I—Growth Mechanisms, Microstructure, and Chemical Composition
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[15] 放电发射光谱在金属微弧氧化表面处理中的应用研究进展
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[16] Magnesium alloys for biomedical application: Advanced corrosion control through surface coating
2020
[17] Recent progress in surface modification of metals coated by plasma electrolytic oxidation: Principle, structure, and performance
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[18] Role of incorporation of ZnO nanoparticles on corrosion behavior of ceramic coatings developed on AZ31 Magnesium alloy by plasma electrolytic oxidation technique
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[19] The multi-effects of K2TiF6 additive on the properties of PEO coatings on AZ31 Mg alloy
2020
[20] Efeito da oxidação eletrolítica assistida a plasma sobre a resistência à corrosão do magnésio em solução simulada de fluido corpóreo
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[21] Effect of pulse current mode on microstructure, composition and corrosion performance of the coatings produced by plasma electrolytic oxidation on AZ31 Mg alloy
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[22] Method for determining of the coatings thermophysical properties formed by the microarc oxidation
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[23] Influence of Sealing Treatment on the Corrosion Resistance of PEO Coated Al-Zn-Mg-Cu Alloy in Various Environments
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[24] Effect of positive pulse voltage on color value and corrosion property of magnesium alloy black micro-arc oxidation ceramic coating
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[25] Corrosion behavior of porous magnesium coated by plasma electrolytic oxidation in simulated body fluid
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[26] Microarc oxidation and its progress for corrosion prevention of magnesium alloyCUI Xue-Jun*, PING Jing
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[27] A Review on Preparation of Anti-corrosion Coatings on Magnesium and its Alloys by Plasma Electrolytic Oxidation (PEO) for Aerospace and Automotive Applications: Effect of Nanoparticles Addition
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[28] Growth behaviour of low-energy plasma electrolytic oxidation coatings on a magnesium alloy
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[29] Nano‐sized zeolite particles as inhibitor carrier in plasma electrolytic oxide layers on AZ31
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[30] Structure and Thermophysical Properties of Coatings Formed by the Method of Microarc Oxidation on an Aluminum Alloy AK4-1
Solid State Phenomena, 2018
[31] Corrosion and corrosion fatigue performances of micro‐arc oxidation coating on AZ31B cast magnesium alloy
Journal of the International Council on Systems Engineering, 2018
[32] Simulation of Plasma Electrolytic Oxidation (PEO) of AM50 Mg Alloys and its Experimental Validation
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[33] 微弧氧化技术及其在镁合金腐蚀防护领域的研究进展
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[34] 微弧氧化及其在镁合金腐蚀防护领域的研究进展
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[35] Microarc oxidation discharge types and bio properties of the coating synthesized on zirconium
Materials Science and Engineering: C, 2017
[36] Analysis of Microstructure and Properties of Micro-arc Oxidation Coatings on 2A12 Aluminum Alloys for Marine Applications
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[37] Effect of KOH to Na2SiO3 Ratio on Microstructure and Hardness of Plasma Electrolytic Oxidation Coatings on AA 6061 Alloy
Journal of Materials Engineering and Performance, 2017
[38] Investigation of the thermophysical properties of the oxide layer formed by microarc oxidation on Al-Si alloy
International Conference on Modern Trends in Manufacturing Technologies and Equipment (ICMTMTE 2017), 2017
[39] Particle Size Influences on the Coating Microstructure through Green Chromia Inclusion in Plasma Electrolytic Oxidation
ACS Applied Materials & Interfaces, 2017
[40] Influence of Applied Frequency on Microstructural and Electrochemical Characteristics of Ceramic Coating Produced on Al-Mg Alloy by Pulsed Plasma Electrolytic Oxidation
Acta Physica Polonica, 2016
[41] Development of copper-enriched porous coatings on ternary Ti-Nb-Zr alloy by plasma electrolytic oxidation
The International Journal of Advanced Manufacturing Technology, 2016
[42] Corrosion protection of thickness reduced plasma electrolytic layers on AZ31
Materials and Corrosion, 2016
[43] Energy-dispersive X-Ray spectroscopy mapping of porous coatings obtained on Titanium by plasma electrolytic oxidation in a solution containing concentrated phosphoric acid with copper nitrate
Advances in Materials Science, 2016
[44] Production Of High Quality Coatings On Light Alloys Using Plasma Electrolytic Oxidation (PEO)
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[45] Energy-dispersive X-Ray spectroscopy mapping of porous coatings obtained on Titanium by plasma electrolytic oxidation in a solution containing concentrated …
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[46] Influence of applied frequency on microstructural and electrochemical characteristics of ceramic coating produced on Al-Mg alloy by pulsed plasma electrolytic …
Acta Physica Polonica A, 2016
[47] Influences of urea and sodium nitrite on surface coating of plasma electrolytic oxidation
Applied Surface Science, 2015
[48] An investigation of the coating/substrate interface of plasma electrolytic oxidation coated aluminum
Surface and Coatings Technology, 2015
[49] Corrosion and Tribocorrosion Behavior of Zro2-Al2o3 Composite Coatings Developed by Plasma Electrolytic Oxidation for Load-Bearing Implants
[50] A Review on Preparation of Anti-corrosion Coatings on Magnesium and its Alloys by Plasma Electrolytic Oxidation (PEO) for Aerospace and Automotive …
L Famiyeh
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