Influence of Electrolyte Compositions and Electrical Parameters on Thermal Properties of Micro-Arc Oxidized AZ91 Alloy

Ekin Selvi, Faiz Muhaffel, Yakup Yürektürk, Ali Serdar Vanlı, Murat Baydoğan*

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

9 Citations (Scopus)

Abstract

In this study, AZ91 Mg alloy was micro-arc oxidized using different voltages in silicate- and aluminate/phosphate-based (dual) electrolytes that included K2ZrF6 or Na2ZrO3 as the Zr source for synthesizing ZrO2 in the micro-arc oxidation (MAO) coatings. Structural characterizations were done by using scanning electron microscopy and x-ray diffraction techniques. MAO coating characteristics of different samples were compared by measuring coating thickness, surface roughness, average pore size, and total pore fraction. Both hardness and pull-off tests were conducted to characterize the mechanical properties of the coatings. Thermal conductivity measurements and thermal shock tests were also carried out to evaluate the effect of the electrolyte composition and the type of Zr containing compound. It was found that the equivalent thermal conductivity of the MAOed samples can be reduced up to 30% compared to the bare AZ91 alloy. The decrease of the thermal conductivity was mainly attributed to formation of a thicker and denser MAO coating, and the incorporation of ZrO2 phase into the fabricated MAO coating. Finally, increased thermal shock resistance was strongly correlated with a lower hardness and higher cohesive strength of the MAO coating, which also leads to smaller crack formation and spallation-free surface characteristics.

Original languageEnglish
Pages (from-to)1667-1678
Number of pages12
JournalJournal of Materials Engineering and Performance
Volume31
Issue number2
DOIs
Publication statusPublished - Feb 2022

Bibliographical note

Publisher Copyright:
© 2021, ASM International.

Funding

The authors greatly acknowledge Dr. H. Mindivan from Bilecik Seyh Edebali University Central Research Laboratory for his support during SEM and EDS analyses. The authors also acknowledge the financial support provided by Istanbul Technical University as a part of the ITU Scientific Research Projects with the Grant No. 39644. The authors greatly acknowledge Dr. H. Mindivan from Bilecik Seyh Edebali University Central Research Laboratory for his support during SEM and EDS analyses. The authors also acknowledge the financial support provided by Istanbul Technical University as a part of the ITU Scientific Research Projects with the Grant No. 39644.

FundersFunder number
International Technological University39644
Istanbul Teknik Üniversitesi
Bilecik Şeyh Edebali Üniversitesi

    Keywords

    • magnesium alloy
    • micro-arc oxidation
    • thermal properties
    • zirconium

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