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Effect of the second-step voltages on the structural and corrosion properties of silicon–calcium–phosphate (Si–CaP) coatings on Mg–Zn–Ca alloy

机译:二次电压对Mg-Zn-Ca合金上的硅钙磷酸盐(Si-CaP)涂层的结构和腐蚀性能的影响

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摘要

The applications of magnesium (Mg) alloys as biodegradable orthopedic implants are mainly restricted due to their rapid degradation rate in the physiological environment. In this study, Si–CaP micro-arc oxidation (MAO) coatings were prepared on a Mg–Zn–Ca alloy by a second-step MAO process at different voltages in order to decrease the degradation rate and increase the bioactivity of the alloy. The microstructure and morphology of the samples were characterized using XRD, FT-IR SEM and EDS. The degradation behaviours of samples were evaluated using electrochemical techniques, and immersion tests in simulated body fluid (SBF). The results indicate that the morphology of the Si–CaP coatings changed significantly with the increase in Ca/P ratio as the second-step voltage increased. The Si–CaP containing coating produced at 450 V could significantly decrease the degradation rate of Mg and caused a slow increase in pH of the SBF solution. The haemolysis test concluded that the coating C3 did not cause a haemolytic reaction. The corrosion resistance of Mg alloy was greatly improved with the Si–CaP coatings, and the Mg alloy with Si–CaP coating prepared at 450 V had the best corrosion resistance, which indicates that the Si–CaP coatings are promising for improving the biodegradation properties of Mg-based orthopedic implants. Haemolysis tests indicated that the Si–CaP coating prepared at 450 V conforms to the given standard (YY/T0127.1-93).
机译:镁(Mg)合金作为可生物降解的骨科植入物的应用主要受到限制,因为它们在生理环境中的降解速度很快。在这项研究中,通过第二步MAO工艺在不同电压下在Mg-Zn-Ca合金上制备了Si-CaP微弧氧化(MAO)涂层,以降低合金的降解速率并提高其生物活性。使用XRD,FT-IR SEM和EDS对样品的微观结构和形态进行表征。使用电化学技术和在模拟体液(SBF)中的浸没测试评估了样品的降解行为。结果表明,随着第二步电压的增加,Si-CaP涂层的形貌随Ca / P比的增加而显着变化。在450 V电压下产生的含Si-CaP的涂层可以显着降低Mg的降解速率,并导致SBF溶液的pH缓慢升高。溶血试验得出结论,涂层C3没有引起溶血反应。 Si-CaP涂层大大提高了Mg合金的耐蚀性,并且在450 V下制备的带有Si-CaP涂层的Mg合金具有最佳的耐蚀性,这表明Si-CaP涂层有望改善生物降解性能基于镁的骨科植入物。溶血试验表明,在450 V下制备的Si–CaP涂层符合给定标准(YY / T0127.1-93)。

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