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FABRICATION AND CHARACTERIZATION OF A BIOCOMPATIBLE COATING FORMED ON A HEAT-TREATED MAGNESIUM ALLOY USING MICRO-ARC OXIDATION

机译:微弧氧化制备热处理镁合金的生物相容性涂层的制备与表征

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The fast corrosion rate of magnesium (Mg) alloys is the main problem associated with the use of such biocompatible alloys for bone fixation applications. The corrosion resistance of Mg alloys can be improved by different post-fabrication processes such as heat treatment and coating. We have heat-treated a biocompatible Mg-l.2Zn-0.5Ca (wt.%) alloy at optimized heat treatment parameters to achieve the highest mechanical strength and corrosion resistance. Afterwards, the heat-treated alloy was coated/ with a ceramic layer using micro arc oxidation (MAO) process to further enhance the corrosion resistance. The microstructure of the prepared samples was investigated using optical microscopy and scanning electron microscopy (SEM). The corrosion characteristics were determined by conducting in vitro electrochemical and immersion corrosion tests. The results showed that the heat treatment process successfully improved the mechanical and corrosion properties of the Mg-1.2Zn-0.5Mn (wt.%) alloy. Both the in vitro electrochemical and immersion corrosion tests showed that the MAO-coated samples have a significantly higher corrosion resistance which results in a significantly lower corrosion rate. This study indicated that the biocompatible coating produced by MAO process may be suitable for providing heat-treated Mg-Zn-Ca-based alloys with protection from corrosion towards synthesizing bone fixation materials in clinical application.
机译:镁(Mg)合金的快速腐蚀速率是与将此类生物相容性合金用于骨固定应用相关的主要问题。镁合金的耐蚀性可以通过不同的后加工工艺(例如热处理和涂层)来提高。我们已经在优化的热处理参数下对生物相容性Mg-1.2Zn-0.5Ca(wt。%)合金进行了热处理,以实现最高的机械强度和耐腐蚀性。之后,使用微弧氧化(MAO)工艺在热处理的合金上涂覆陶瓷层/以进一步增强耐腐蚀性。使用光学显微镜和扫描电子显微镜(SEM)研究了所制备样品的微观结构。通过进行体外电化学和浸没腐蚀测试来确定腐蚀特性。结果表明,热处理工艺成功地改善了Mg-1.2Zn-0.5Mn(wt。%)合金的力学性能和腐蚀性能。体外电化学和浸没腐蚀测试均显示,涂有MAO的样品具​​有显着较高的耐腐蚀性,从而显着降低了腐蚀速率。这项研究表明,通过MAO工艺生产的生物相容性涂层可能适用于为热处理的Mg-Zn-Ca基合金提供抗腐蚀保护,从而在临床应用中合成骨固定材料。

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