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Development of High-strength and Highly Corrosion-resistant Bulk Nanocrystalline Mg-Zn-Y Alloys with Long Period Stacking Ordered Phase

机译:长期堆叠阶段的高强度和高耐腐蚀块状纳米晶Mg-Zn-Y合金的研制

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Highly corrosion-resistant Mg_(97.25)Zn_(075)Y_2 and Mg_(96.75)Zn_(0.75)Y_2Al_(0.5) (at.%) alloys have been produced by the consolidation of rapidly solidified ribbons. Rapid solidification brought about the grain refinement and an increase in the solid solubility of Zn and Y into the Mg matrix, enhancing microstructural and electrochemical homogeneity, which in turn enhanced corrosion resistance. Passivation behavior was observed in dynamic anodic polarization measurements on rapidly solidified Mg-Zn-Y-Al alloy. The addition of Al to Mg might modify the structure of surface films and improve the resistance to local breakdown of the films.
机译:高耐腐蚀Mg_(97.25)Zn_(075)Y_2和Mg_(96.75)Zn_(0.75)Y_2AL_(0.5)(0.5)(0.5)通过迅速凝固的带巩固产生的合金。快速凝固带来晶粒细化和Zn和y进入Mg基质的固体溶解度的增加,增强了微观结构和电化学均匀性,从而提高了耐腐蚀性。在快速凝固的Mg-Zn-Y-Al合金上的动态阳极偏振测量中观察到钝化行​​为。添加A1至Mg可以改变表面膜的结构,并改善膜的局部击穿的抵抗力。

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