期刊
JOURNAL OF THE MECHANICAL BEHAVIOR OF BIOMEDICAL MATERIALS
卷 77, 期 -, 页码 360-374出版社
ELSEVIER
DOI: 10.1016/j.jmbbm.2017.09.032
关键词
Mg/TiO2-based nanocomposite; Si/MgO coating; Adhesion strength; UCS; Immersion; Cell viability
资金
- FRGS [4F608, 09H80, 4F648, 4F808]
This study was aimed to improve of the corrosion resistance and mechanical properties of Mg/15TiO(2)/5HA nanocomposite by silicon and magnesium oxide coatings prepared using a powder metallurgy method. The phase evolution, chemical composition, microstructure and mechanical properties of uncoated and coated samples were characterized. Electrochemical and immersion tests used to investigate the in vitro corrosion behavior of the fabricated samples. The adhesion strength of similar to 36 MPa for MgO and similar to 32 MPa for Si/MgO coatings to substrate was measured by adhesion test. Fabrication a homogenous double layer coating with uniform thicknesses consisting micro-sized particles of Si as outer layer and flake-like particles of MgO as the inner layer on the surface of Mg/15TiO(2)/5HA nanocomposite caused the corrosion resistance and ductility increased whereas the ultimate compressive stress decreased. However, after immersion in SBF solution, Si/MgO-coated sample indicates the best mechanical properties compared to those of the uncoated and MgO-coated samples. The increase of cell viability percentage of the normal human osteoblast (NHOst) cells indicates the improvement in biocompatibility of Mg/15TiO(2)/5HA nanocomposite by Si/MgO coating.
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