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Ab initio investigation of the surface properties of austenitic Fe-Ni-Cr alloys in aqueous environments

机译:从头开始研究水性环境中奥氏体Fe-Ni-Cr合金的表面性能

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The surface energetics of two austenitic stainless steel alloys (Type 304 and 316) and three Ni-based alloys (Alloy 600, 690, and 800) are investigated using theoretical methods within the density functional theory. The relative stability of the low index surfaces display the same trend for all alloys; the most closely packed orientation and the most stable is the (111), followed by the (100) and the (110) surfaces. Calculations on the (111) surfaces using various surface chemical and magnetic configurations reveal that Ni has the tendency to segregate toward the surface and Cr has the tendency to segregate toward the bulk. The magnetic frustration present on the (111) surfaces plays an importantrole in the observed segregation tendencies of Ni and Cr. The stability of the (111) surfaces in contact with aqueous solution are evaluated as a function of temperature, pH, and concentration of aqueous species. The results indicate that the surface stability of the alloys decrease with temperature and pH, and increase slightly with concentration. Under conditions characteristic to an operating pressurized water reactor, the Ni-based alloy series appears to be of better quality than the stainless steel series with respect to corrosion resistance and release of aqueous species when in contact with aqueous solutions.(C) 2017 Elsevier B.V. All rights reserved.
机译:使用密度泛函理论中的理论方法研究了两种奥氏体不锈钢合金(304和316型)和三种镍基合金(合金600、690和800)的表面能。对于所有合金,低折射率表面的相对稳定性都显示出相同的趋势。最紧密排列且最稳定的方向是(111),其次是(100)和(110)表面。使用各种表面化学和磁性构型对(111)表面进行的计算表明,Ni倾向于向表面偏析,而Cr倾向于向本体偏析。在(111)表面上存在的磁挫伤在观察到的Ni和Cr偏析趋势中起着重要作用。与温度接触的(111)表面的稳定性根据温度,pH和水溶液种类的浓度进行评估。结果表明,合金的表面稳定性随温度和pH的降低而降低,随浓度的升高而略有提高。在压水反应堆正常运行的条件下,镍基合金系列在与水溶液接触时的耐腐蚀性和水性物质释放方面似乎比不锈钢系列更好。(C)2017 Elsevier BV版权所有。

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