Enhancement of corrosion resistance and mechanical properties of Mg–1.2Ca–2Bi via a hybrid silicon-biopolymer coating system

In this work, a hybrid dual layer surface coating consisting of a silicon (Si) underlayer and poly(ε-caprolactone) (PCL) overlayer was investigated that was designed to reduce the corrosion rates of magnesium-based biomaterials. The Si underlayer was 1.2μm thick and composed of spherical nanoparticl...

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Veröffentlicht in:Surface & coatings technology 2016-09, Vol.301, p.133-139
Hauptverfasser: Bakhsheshi-Rad, H.R., Hamzah, E., Daroonparvar, M., Abdul Kadir, M.R., Kasiri-Asgarani, M., Staiger, Mark P.
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Sprache:eng
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Zusammenfassung:In this work, a hybrid dual layer surface coating consisting of a silicon (Si) underlayer and poly(ε-caprolactone) (PCL) overlayer was investigated that was designed to reduce the corrosion rates of magnesium-based biomaterials. The Si underlayer was 1.2μm thick and composed of spherical nanoparticles. The overlayer of PCL was 75.2μm thick and comprised network of pores. Corrosion-induced reduction of the compressive strength of a Si/PCL-coated Mg–Ca–Bi alloy was lower than that of the uncoated or Si layer-coated alloys. However, the bonding strength of the Si coating (24.6MPa) was significantly higher than that of the Si/PCL-coated samples (6.8MPa). The Si/PCL coating dramatically enhances the charge transfer resistance of the Mg alloy (2.11kΩcm2) in simulated body fluid when compared with a Si-coated sample (2265.12kΩcm2). Si/PCL coatings are considered a promising route to control the corrosion rate and mechanical properties of Mg-based biomaterials. [Display omitted] •Si/PCL coating is fabricated on the Mg alloy by combined PVD and dip coating.•Bonding strength of the Si and Si/PCL coating was investigated.•Si/PCL coating significantly enhance the corrosion resistance of Mg alloy.•Compressive strength of Si/PCL is higher than uncoated sample after immersion test.
ISSN:0257-8972
1879-3347
DOI:10.1016/j.surfcoat.2015.09.039