Comparative investigation of coating and friction stir processing on Mg-Zn-Dy alloy for improving antibacterial, bioactive and corrosion behaviour

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Date

2021

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Elsevier B.V.

Abstract

Magnesium based alloys are well-known materials for temporary implant applications. However, failures due to early degradation and bacterial infection are limiting their applications. To overcome these problems, in the present work a Mg-Zn-Dy alloy based composite surface was prepared using coating and friction stir processing (FSP) techniques. Herein, hydroxyapatite (HA) and silver (Ag) particles were deposited on Mg-Zn-Dy alloy to obtain HA and Ag coated surface (C-HAg). Later, FSP was carried out on the C-HAg surface to develop a Mg-Zn-Dy alloy based composite surface (F-HAg). Field emission scanning electron microscope (FESEM) and energy dispersive X-ray analysis (EDS) confirm the mixing of HA and Ag particles with the Mg-Zn-Dy substrate. Antibacterial studies reveal that both C-HAg and F-HAg samples inhibit Escherichia coli and Staphylococcus aureus bacteria. In vitro cytotoxicity study indicates that the both samples are non-toxic in nature. Results of in vitro corrosion study reveal a significant reduction (72%) in corrosion rate of F-HAg sample when compared to C-HAg sample. The F-HAg samples showed simultaneous improvement in corrosion resistance and antibacterial properties with good biocompatibility. The results of this study indicate that the developed composite surface is a promising material for antibacterial and biodegradable implant applications. © 2021 Elsevier B.V.

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Keywords

Biocompatibility, Corrosion rate, Corrosion resistance, Corrosion resistant alloys, Corrosion resistant coatings, Corrosive effects, Energy dispersive X ray analysis, Escherichia coli, Friction, Friction stir welding, Hydroxyapatite, Scanning electron microscopy, Silver, Ternary alloys, X ray diffraction analysis, Zinc alloys, Ag particles, Anti-bacterial activity, Anti-bacterial behaviors, Bacterial infections, Bioactives, Composite surface, Corrosion behaviour, Early degradations, Friction stir processing, Processing technique, Magnesium alloys

Citation

Surface and Coatings Technology, 2021, 425, , pp. -

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