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Corrosion Control of Mg-Zn Implant Alloys in Simulated Body Fluid

机译:Mg-Zn植入合金在模拟体液中的腐蚀控制

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Magnesium alloys have recently attracted the attention as a new biodegradable material. In this study, Mg-Zn alloys (1-4wt.% Zn) were fabricated with high purity raw materials using a clean melting process (fluxless method) and a protective atmosphere of CO 2 + 0.4 SF 6 . The as-cast microstructures of the investigated alloys were characterized by optical and scanning electron microscopes, EDS and XRD. Corrosion properties of the prepared alloys were examined in simulated body fluid (SBF) by electrochemical techniques and immersion test (hydrogen evolution method). Surface modification of the prepared alloys was performed using micro arc oxidation (MAO) treatment and hydroxiapatite (HA) coating. The results of the as-cast microstructure showed that Zn up to 2 wt% was completely dissolved in a-Mg matrix. On increasing Zn content (> 2wt%) the grain size decreased and a second MgZn 2 phase was observed. Corrosion testing results revealed that Mg-1,2,3 wt% Zn have almost the same corrosion rates (0.025 mm/y) whereas Mg-4Zn has the highest degradation rate. Hydroxiapatite (HA) coating on micro-arc oxidation (MAO) treated magnesium alloys formed a dense and compact layer on the surface of magnesium alloys which had greatly improved surface properties and enhanced corrosion resistance of the prepared alloys.
机译:镁合金作为一种新型的可生物降解材料最近引起了人们的关注。在这项研究中,Mg-Zn合金(含1-4wt。%的Zn)是使用清洁的熔化工艺(无熔剂法)和保护气氛为CO 2 + 0.4 SF 6的高纯度原材料制成的。通过光学和扫描电子显微镜,EDS和XRD对所研究合金的铸态组织进行了表征。通过电化学技术和浸没试验(析氢法),在模拟体液(SBF)中检查了所制备合金的腐蚀性能。使用微弧氧化(MAO)处理和氢磷灰石(HA)涂层对制备的合金进行表面改性。铸态组织的结果表明,高达2 wt%的Zn完全溶解在a-Mg基质中。随着锌含量的增加(> 2wt%),晶粒尺寸减小,并观察到第二个MgZn 2相。腐蚀测试结果表明,Mg-1,2,3 wt%Zn具有几乎相同的腐蚀速率(0.025 mm / y),而Mg-4Zn具有最高的降解速率。微弧氧化(MAO)处理的镁合金上的羟基磷灰石(HA)涂层在镁合金表面形成致密致密的层,极大地改善了所制备合金的表面性能并增强了其耐腐蚀性。

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