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Micro-arc oxidation coating on porous magnesium foam and its potential biomedical applications

机译:多孔镁泡沫上的微电弧氧化涂层及其潜在的生物医学应用

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摘要

In this study, we fabricated a biodegradable porous metal using the AZ31 Mg alloy substrate with anodic coating for application in bioimplant scaffolds. The cellular Mg alloy was obtained by employing replication processes that use NaCl as a space holder under a controlled atmosphere. Further, vacuum pressure was applied for achieving the infiltration. The Mg porous samples were coated by a micro-arc oxidation (MAO) technique using a phosphate/calcium electrolyte. Further, the samples were examined by atomic force microscopy (AFM), scanning electron microscopy (SEM), X-ray diffraction (XRD), compression tests and surface area measurements. The MAO technique allowed us to obtain a homogeneous coating layer of similar to 16.0 mu m thickness with the surface across the foam structure comprising rounded pores with diameters of less than 3.0 mu m. Ca, P, Mg and O are the main elements of the anodic coating. Furthermore, both the coated and uncoated porous samples exhibit similar values of approximately 1.5 GPa and 5.0 MPa for the Young's modulus and compressive strength, respectively.
机译:在这项研究中,我们使用具有阳极涂层的AZ31mg合金基材制造可生物降解的多孔金属,用于在生物涂料支架中应用。通过采用在受控气氛下使用NaCl作为空间支架的复制过程获得细胞Mg合金。此外,施加真空压力以实现渗透。使用磷酸盐/钙电解质通过微弧氧化(MAO)技术涂覆Mg多孔样品。此外,通过原子力显微镜(AFM),扫描电子显微镜(SEM),X射线衍射(XRD),压缩试验和表面积测量来检查样品。毛泽地技术使我们获得了类似于16.0μm厚度的均匀涂层,其表面穿过泡沫结构,该泡沫结构包括直径小于3.0μm的圆孔。 Ca,p,mg和o是阳极涂层的主要元素。此外,涂覆和未涂覆的多孔样品均分别表现出杨氏模量和抗压强度的相似值约1.5GPa和5.0MPa。

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