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Microstructure and corrosion behavior of coated AZ91 alloy by microarc oxidation for biomedical application

  • Harbin Engineering University
  • CAS - Institute of Metal Research
  • Harbin Institute of Technology

Research output: Contribution to journalArticlepeer-review

Abstract

Magnesium and its alloy currently are considered as the potential biodegradable implant materials, while the accelerated corrosion rate in intro environment leads to implant failure by losing the mechanical integrity before complete restoration. Dense oxide coatings formed in alkaline silicate electrolyte with and without titania sol addition were fabricated on magnesium alloy using microarc oxidation process. The microstructure, composition and degradation behavior in simulated body fluid (SBF) of the coated specimens were evaluated. It reveals that a small amount of TiO 2 is introduced into the as-deposited coating mainly composed of MgO and Mg 2 SiO 4 by the addition of titania sol into based alkaline silicate electrolytic bath. With increasing concentration of titania sol from 0 to 10 vol.%, the coating thickness decreases from 22 to 18 μm. Electrochemical tests show that the E corr of Mg substrate positively shifted about 300∼500 mV and i corr lowers more than 100 times after microarc oxidation. However, the TiO 2 modified coatings formed in electrolyte containing 5 and 10 vol.% titania sol indicate an increasing worse corrosion resistance compared with that of the unmodified coating, which is possibly attributed to the increasing amorphous components caused by TiO 2 involvement. The long term immersing test in SBF is consistent with the electrochemical test, with the coated Mg alloy obviously slowing down the biodegradation rate, meanwhile accompanied by the increasing damage trends in the coatings modified by 5 and 10 vol.% titania sol.

Original languageEnglish
Pages (from-to)9124-9131
Number of pages8
JournalApplied Surface Science
Volume255
Issue number22
DOIs
StatePublished - 30 Aug 2009

Keywords

  • Biodegradable property
  • Coating
  • Magnesium alloy
  • Microarc oxidation

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