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Electrochemical behavior of microbiologically influenced corrosion on Fe3Al in marine environment

Xueting CHANG , Shougang CHEN , Guanhui GAO , Yansheng YIN , Sha CHENG , Tao LIU

金属学报(英文版) doi:10.1016/S1006-7191(08)60104-0

In this article, microbiologically influenced corrosion behavior of Fe3Al intermetallic compound in microorganism culture medium has been investigated by using weight loss methods, electrochemical techniques, and electron microscopy. Polarization curves showed that a sharp electrical current peak caused by surface pitting could be observed after Fe3Al electrodes were immersed in culture medium for 15 days when the polarization potential was about -790 mV vs SCE. Based on the electrochemical impedance spectroscopy (EIS) and the equivalent circuit parameters of the associated system, the corrosion products were found to exhibit a two-layer structured feature and the microorganisms could induce pitting and erosion corrosion of the inner layer. In addition, the passivating film of the inner layer was absolutely destroyed by microbial metabolic products.

关键词: Electrochemical behavior , null , null , null

B2型Y基金属间化合物YX(X=Ag,Cu,In,Rh)延性预测

庄厚龙 , 彭平 , 周惦武 , 刘金水

稀有金属材料与工程

采用第一原理赝势平面波方法--CASTEP程序计算了4种B2型Y基金属间化合物YX(X=Ag,Cu,In,Rh)的部分弹性性质,计算结果与文献报道值基本一致.通过Pugh定律、Cauchy压力和泊松比等经验判据,分析并预测了它们的脆性/延性,其延性高低次序为:YRh>YAg>YCu>YIn.电子结构分析表明:这4种金属间化合物良好的延性源于其较强的金属键,而不同程度的Y(d)-X(p)电子杂化则导致了其延性的差异.YIn中因In的p电子较多,杂化程度高,共价键方向性强,因而延展性最低,而YRh则由于存在Y(d)-Rh(d)电子间强的相互作用,增强了其金属键作用,因而延性最好.

关键词: Y基金属间化合物 , 脆性/延性 , 第一原理 , 电子结构

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