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Microstructure and corrosion behavior of rapidly solidified Mg-Zn-Y alloys

机译:快速凝固的Mg-Zn-Y合金的组织和腐蚀行为

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摘要

The effect of a minor change in alloy composition on the microstructure and corrosion properties of melt spun Mg98.3−xZnxY1.7 ribbons with x=9–12 is studied by X-ray diffractometry, differential scanning calorimetry, transmission electron microscopy and a dynamic polarization test. The ribbon specimens with x=9–10 revealed an in-situ composite microstructure consisting of icosahedral quasicrystalline phase (I-phase) particles distributed in an α-Mg matrix. The ribbon specimens with x=11 and 12 contained a minor MgZn2 phase together with an α-Mg phase and I-phase. With increasing Zn content, the corrosion potential increased because of a mixed potential effect, but the formation of a MgZn2 phase deteriorated the corrosion property through preferential attack, causing an irregular boundary between the corrosion product and the substrate. These results indicate that it is important to control alloy chemistry not to form the MgZn2 phase in developing an I-phase strengthened Mg-Zn-Y alloy for structural applications.
机译:通过X射线衍射法,差示扫描量热法,透射电子显微镜和动态力学研究了合金成分的微小变化对x = 9-12的Mg98.3-xZnxY1.7熔体薄带的显微组织和腐蚀性能的影响。极化测试。 x = 9–10的带状样品显示了由分布在α-Mg基质中的二十面体准晶相(I相)颗粒组成的原位复合微观结构。 x = 11和12的带状试样包含次要的MgZn2相,α-Mg相和I相。随着Zn含量的增加,腐蚀电位由于混合电位效应而增加,但是MgZn2相的形成会由于优先腐蚀而使腐蚀性能恶化,从而导致腐蚀产物与基材之间的边界不规则。这些结果表明,在开发用于结构应用的I相强化Mg-Zn-Y合金时,重要的是控制合金化学,以免形成MgZn2相。

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  • 来源
    《Metals and Materials International 》 |2013年第2期| 205-209| 共5页
  • 作者单位

    Center for Non-crystalline materials Yonsei University">(12010);

    Department of Optical Engineering Cheongju University">(22010);

    Center for Non-crystalline materials Yonsei University">(12010);

    KIRAM Korea Institute of Industrial Technology">(32010);

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