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首页> 外文期刊>Acta biomaterialia >A study on alkaline heat treated Mg-Ca alloy for the control of the biocorrosion rate.
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A study on alkaline heat treated Mg-Ca alloy for the control of the biocorrosion rate.

机译:碱热处理Mg-Ca合金用于控制生物腐蚀速率的研究。

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To reduce the biocorrosion rate by surface modification, Mg-Ca alloy (1.4wt.% Ca content) was soaked in three alkaline solutions (Na(2)HPO(4), Na(2)CO(3) and NaHCO(3)) for 24h, respectively, and subsequently heat treated at 773K for 12h. Scanning electron microscopy and energy-dispersive spectroscopy results revealed that magnesium oxide layers with the thickness of about 13, 9 and 26microm were formed on the surfaces of Mg-Ca alloy after the above different alkaline heat treatments. Atomic force microscopy showed that the surfaces of Mg-Ca alloy samples became rough after three alkaline heat treatments. The in vitro corrosion tests in simulated body fluid indicated that the corrosion rates of Mg-Ca alloy were effectively decreased after alkaline heat treatments, with the following sequence: NaHCO(3) heated
机译:为了通过表面改性降低生物腐蚀速率,将Mg-Ca合金(1.4wt。%Ca含量)浸泡在三种碱性溶液(Na(2)HPO(4),Na(2)CO(3)和NaHCO(3))中)分别放置24小时,然后在773K进行12小时热处理。扫描电子显微镜和能谱分析结果表明,经过上述不同的碱性热处理后,Mg-Ca合金表面形成了厚度分别约为13、9和26μm的氧化镁层。原子力显微镜显示,经过三次碱性热处理后,Mg-Ca合金样品的表面变得粗糙。在模拟体液中进行的体外腐蚀试验表明,碱热处理后,Mg-Ca合金的腐蚀速率有效降低,其顺序为:NaHCO(3)加热

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