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INFLUENCE OF SILICON IN STEELS ON GALVANIZED COATINGS

C.S. Che , J.T. Lu , G. Kong , null , null , null , null , null , null

金属学报(英文版)

After steel sheets (0.37wt%Si) pre-electroplated with a thin layer of pure Fe were immersed in molten zinc for various time, the change in the microstructure of the galvanized coating on the steel and the change of α-Fe/ Γ interface were studied. The EDS (energy dispersive sepectroscopy) results show that excessive silicon accumulates on the surface of the steel substrate due to the low solubility of silicon in the Γ layer after the Fe layer is depleted by the increasing growth of the compound layers. With the movement of α-Fe/ Γ interface towards the substrate by the Fe/ Zn reaction, silicon-rich α-Fe peels off from the substrate and breaks into particles. The particles, much like an inert marker in a Kirkendall effect experiment, move towards the δ layer through the Γ layer because silicon-rich α-Fe can not be adsorbed in the Γ layer. On reaching the δ/ Γ interface, the particles quickly dissolve in the δ layer, and accelerate its growth, resulting in the gradual disappearance of the Γ layer. At the same time, the normal coating is quickly changed into coatings typical of reactive steels as silicon dissolved in the δ layer soon diffuses toward the ζ layer. A similar process may happen in the initial stage of galvanizing reactive steels on a small scale, although it is hard to be observed.

关键词: Zn coating , , 锌镀层 , 中间化合物

第二相Mg3Hg对Mg-5%Hg-1%Ga合金电化学性能的影响

冯艳 , 王日初 , 彭超群 , 王乃光

稀有金属材料与工程

采用熔炼铸造方法制备出Mg-5%Hg-1%Ga合金,在573~773 K时效不同时间,利用X射线物相检测、扫描电镜结合能谱分析第二相Mg<,3>Hg的形貌和分布,用交流阻抗法等电化学方法研究Mg<,3>Hg对Mg-5%Hg-1%Ga阳极在3.5%NaCl(质量分数)溶液中电化学性能的影响.结果表明:时效时间从15 min延长至200 h时,Mg-5%Hg-1%Ga合金中α-Mg和Mg<,3>Hg的共晶组织转变为α-Mg基体中弥散分布Mg<,3>Hg颗粒,这种转变降低了浓差极化和法拉第反应中电荷传递电阻,提高电化学活性.弥散分布的Mg<,3>Hg颗粒使Mg-5%Hg-1%Ga合金组织均匀,提高了耐腐蚀性能.

关键词: Mg-Hg-Ga合金 , 阳极行为 , 中间化合物 , 交流阻抗 , 晶间腐蚀

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