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首页> 外文期刊>ACS Omega >Preparation and Corrosion Resistance of Microarc Oxidation-Coated Biomedical Mg–Zn–Ca Alloy in the Silicon–Phosphorus-Mixed Electrolyte
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Preparation and Corrosion Resistance of Microarc Oxidation-Coated Biomedical Mg–Zn–Ca Alloy in the Silicon–Phosphorus-Mixed Electrolyte

机译:硅磷混合电解质中微弧氧化膜生物医学Mg-Zn-Ca合金的制备及耐蚀性

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Microarc oxidation (MAO) coating was prepared on the surface of the biomedical Mg–3Zn–0.2Ca alloy in a phosphate electrolyte with varying concentrations of Na2SiO3. The morphology, cross section, chemical composition, and corrosion resistance of the coatings were characterized by scanning electron microscopy (SEM), energy dispersive X-ray spectroscopy (EDS), X-ray diffraction (XRD), electrochemical polarization tests (EI), and in vitro immersion experiments. The addition of Na2SiO3 is performed to increase the thickness and compactness of the coating. When the Si/P atomic ratio is approximately equal to 1 (1.5 g/L Na2SiO3), the best corrosion resistance is achieved, while excessive addition may lead to coating defects such as voids and microcracks, resulting in decreased corrosion resistance. The competitive relationship between PO43– and SiO32– anions in the silicon–phosphorus microarc oxidation-mixed electrolyte is discussed. In this study, it was first proposed that, when Mg2SiO4 and Mg3 (PO4)2 phase contents were approximately the same, the synergistic improvement effect on coating corrosion resistance was the most effective.
机译:在具有不同浓度的Na2SiO3的磷酸盐电解质中的生物医学Mg-3Zn-0.2Ca合金表面上制备了微弧氧化(MAO)涂层。通过扫描电子显微镜(SEM),能量色散X射线光谱(EDS),X射线衍射(XRD),电化学极化试验(EI)对涂层的形貌,横截面,化学成分和耐蚀性进行了表征和体外浸泡实验。进行Na 2 SiO 3的添加以增加涂层的厚度和致密性。当Si / P原子比大约等于1(1.5 g / L Na2SiO3)时,可获得最佳的耐蚀性,而过量添加可能会导致涂层缺陷(如空隙和微裂纹),从而降低耐蚀性。讨论了硅磷微弧氧化混合电解质中PO43和SiO32阴离子之间的竞争关系。在这项研究中,首次提出,当Mg2SiO4和Mg3(PO4)2相含量大致相同时,对涂层耐蚀性的协同改善效果最有效。

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