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Effect of Mg on the Microstructure and Corrosion Resistance of the Continuously Hot-Dip Galvanizing Zn-Mg Coating

机译:镁对连续热浸镀锌锌镁涂层组织和耐蚀性的影响

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The microstructure of continuously hot-dip galvanizing Zn-Mg coating was investigated in order to obtain the mechanism of the effects of Mg on the corrosion resistance. In this paper, the vertical section of the Zn-0.20 wt % Al-Mg ternary phase diagram near the Al-low corner was calculated. The results indicates that the phase composition of the Zn-0.20 wt % Al-Mg ternary phase diagram near the Al-low corner is the same as Zn-Mg binary phase diagram, suggesting Al in the Zn-Mg (ZM) coatings mainly concentrates on the interfacial layer between the coating and steel substrate. The microstructure of continuously hot-dip galvanizing ZM coatings with 0.20 wt % Al containing 1.0–3.0 wt % Mg was investigated using tunneling electron microscopy (TEM). The morphology of Zn in the coating changes from bulk to strip and finally to mesh-like, and the MgZn 2 changes from rod-like to mesh-like with the Mg content increasing. Al in the ZM coatings mainly segregates at the Fe 2 Al 5 inhibition layer and the Mg added to the Zn bath makes this inhibition layer thinner and uneven. Compared to GI coating, the time of the first red rust appears increases by more than two-fold and expansion rate of red rust reduces by more than four-fold in terms of salt spray experiment. The ZM coating containing 2.0 wt % Mg has the best corrosion resistance. The enhanced corrosion resistance of ZM coatings mainly depends on different corrosion products.
机译:研究了连续热浸镀锌-镁合金镀层的微观结构,以期了解镁对耐蚀性的影响机理。本文计算了Zn-0.20 wt%Al-Mg三元相图在Al低角附近的垂直截面。结果表明,Zn-0.20 wt%Al-Mg三元相图在Al-低角附近的相组成与Zn-Mg二元相图相同,这表明Zn-Mg(ZM)涂层中的Al主要集中在在涂层和钢基材之间的界面层上。使用隧道电子显微镜(TEM)研究了含0.20 wt%Al,含1.0–3.0 wt%Mg的Al的连续热浸镀锌ZM涂层的微观结构。随着Mg含量的增加,镀层中Zn的形态从块状变为条状,最后变为网状,MgZn 2从棒状变为网状。 ZM涂层中的Al主要在Fe 2 Al 5抑制层处偏析,并且添加到Zn浴中的Mg使该抑制层更薄且不均匀。与GI涂层相比,从盐雾实验的角度来看,第一次出现红锈的时间增加了两倍以上,并且红锈的膨胀率降低了四倍以上。含有2.0 wt%Mg的ZM涂层具有最佳的耐腐蚀性。 ZM涂层增强的耐腐蚀性主要取决于不同的腐蚀产物。

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