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用于骨植入应用的镁合金在磷酸盐缓冲溶液中的体外腐蚀行为。

In vitro corrosion behaviour of Mg alloys in a phosphate buffered solution for bone implant application.

作者信息

Xu Liping, Zhang Erlin, Yin Dongsong, Zeng Songyan, Yang Ke

机构信息

Institute of Metal Research, Chinese Academy of Sciences, Shenyang 110016, China.

出版信息

J Mater Sci Mater Med. 2008 Mar;19(3):1017-25. doi: 10.1007/s10856-007-3219-y. Epub 2007 Aug 1.

Abstract

The corrosion behaviour of Mg-Mn and Mg-Mn-Zn magnesium alloy in a phosphate buffered simulated body fluid (SBF) has been investigated by electrochemical testing and weight loss experiment for bone implant application. Long passivation stage and noble breakdown potential in the polarization curves indicated that a passive layer could be rapidly formed on the surface of magnesium alloy in the phosphate buffered SBF, which in turn can protect magnesium from fast corrosion. Surfaces of the immersed magnesium alloy were characterized by SEM, EDS, SAXS and XPS. Results have shown that Mg-Mn and Mg-Mn-Zn alloy were covered completely by an amorphous Mg-containing phosphate reaction layer after 24 h immersion. The corrosion behaviour of magnesium alloys can be described by the dissolving of magnesium through the reaction between magnesium and solution and the precipitating of Mg-containing phosphate on the magnesium surface. Weight loss rate and weight gain rate results have indicated that magnesium alloys were corroded seriously at the first 48 h while Mg-containing phosphate precipitated fast on the surface of magnesium alloy. After 48-96 h immersion, the corrosion reaction and the precipitation reaction reach a stable stage, displaying that the phosphate layer on magnesium surface, especially Zn-containing phosphate layer could provide effective protection for magnesium alloy.

摘要

通过电化学测试和失重实验,研究了Mg-Mn和Mg-Mn-Zn镁合金在用于骨植入的磷酸盐缓冲模拟体液(SBF)中的腐蚀行为。极化曲线中的长钝化阶段和较高的击穿电位表明,在磷酸盐缓冲SBF中,镁合金表面可迅速形成钝化层,进而保护镁免受快速腐蚀。采用扫描电子显微镜(SEM)、能谱仪(EDS)、小角X射线散射(SAXS)和X射线光电子能谱(XPS)对浸泡后的镁合金表面进行了表征。结果表明,浸泡24小时后,Mg-Mn和Mg-Mn-Zn合金完全被非晶态含镁磷酸盐反应层覆盖。镁合金的腐蚀行为可通过镁与溶液之间的反应使镁溶解以及含镁磷酸盐在镁表面沉淀来描述。失重率和增重率结果表明,镁合金在前48小时腐蚀严重,而含镁磷酸盐在镁合金表面快速沉淀。浸泡48-96小时后,腐蚀反应和沉淀反应达到稳定阶段,表明镁表面的磷酸盐层,尤其是含锌磷酸盐层可为镁合金提供有效保护。

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