Surface Modification with Phosphate and Hydroxyapatite of Porous Magnesium Scaffolds Fabricated by Binder Jet Additive Manufacturing

材料科学 多孔性 腐蚀 涂层 磷酸镁 微观结构 表面改性 化学工程 电解质 复合材料 镁合金 冶金 化学 工程类 物理化学 电极
作者
Kai Xiang Kuah,Mojtaba Salehi,Zihan Huang,Su Xia Zhang,Hang Li Seet,Mui Ling Sharon Nai,Daniel John Blackwood
出处
期刊:Crystals [Multidisciplinary Digital Publishing Institute]
卷期号:12 (12): 1850-1850 被引量:10
标识
DOI:10.3390/cryst12121850
摘要

The presence of porosity within magnesium-based orthopaedic implants is known to be beneficial, promoting cell proliferation and vascularisation. However, the presence of porosity increases the surface area available for corrosion, compounding the issue of high corrosion rates which has long been plaguing magnesium-based materials. This work looks at the influence of hydroxyapatite and phosphate conversion coatings on the corrosion performance of conventionally cast, dense Mg-Zn-Zr alloys and binder jet additive manufactured porous Mg-Zn-Zr scaffolds. The performance of coating on dense Mg-Zn-Zr was found to be more effective than the coating on the porous Mg-Zn-Zr scaffold, with the discrepancies attributed to both the microstructure and geometric influence of the binder jet additive manufactured, porous Mg-Zn-Zr scaffold, which not only increases the rate of hydrogen evolution but also reduces the ability of the hydrogen gas generated within the pore channels to escape to the sample’s surface. This restricts the effectiveness of coating application for porous Mg scaffold. Furthermore, the limited diffusion within the pore channels can also result in differing localized corrosion environments, causing discrepancies between the localised corrosion environment within the pore channels and that at the bulk electrolyte.
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