Synthesis, Corrosion and Bioactivity Evaluation of Gelatin/Silicon and Magnesium Co-Doped Fluorapatite Nanocomposite Coating Applied on AZ31 Mg Alloy


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In this study, a nano-composite composed of gelatin as the matrix and Si-Mg-FA nano-particles as an additive was deposited on the AZ31 Mg alloy via dip coating method. In addition, a coating composed of MgO, MgSiO3 and Mg2SiO4 phases was applied on the AZ31 Mg alloy by anodizing process. It was found that the Nano-composite coating with a uniform distribution of nano-particles within the gelatin matrix with the thickness of about 9 µm was dense, crack-free and uniform whereas the surface of anodized layer was relatively coarse due to the presence of flaws and micro-cracks. The surface morphology, EDS analysis and FTIR results revealed the ability of nano-composite coated specimen to form the bone-like apatite. Due to the presence of aforementioned phases and special surface features, the anodized specimen possessed higher and lower corrosion resistance than uncoated and nano-composite coated specimens, respectively. The passive coating resistances (RCT) of nano-composite, anodized specimen and uncoated samples were 2164, 1449 and 1024 Ω cm2, respectively.

作者简介

Aliakbar Jafarzadeh

Department of Materials Engineering, Shahreza Branch; Razi Chemistry Research Center (RCRC), Shahreza Branch

Email: tahmadi56@yahoo.com
伊朗伊斯兰共和国, Shahreza, Isfahan, 86145-311; Isfahan

Tahmineh Ahmadi

Department of Materials Engineering, Shahreza Branch; Razi Chemistry Research Center (RCRC), Shahreza Branch

编辑信件的主要联系方式.
Email: tahmadi56@yahoo.com
伊朗伊斯兰共和国, Shahreza, Isfahan, 86145-311; Isfahan

Majid Dehaghani

Department of Materials Engineering

Email: tahmadi56@yahoo.com
伊朗伊斯兰共和国, Isfahan, 8415683111

Kamran Mohemi

Department of Materials Engineering, Shahreza Branch; Razi Chemistry Research Center (RCRC), Shahreza Branch

Email: tahmadi56@yahoo.com
伊朗伊斯兰共和国, Shahreza, Isfahan, 86145-311; Isfahan

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