氧化物
粘附
材料科学
工作(物理)
金属
表面能
接口(物质)
化学物理
铬
密度泛函理论
基质(化学分析)
化学工程
热力学
复合材料
化学
冶金
计算化学
物理
毛细管作用
工程类
毛细管数
作者
M. Punkkinen,K. Kokko,Henrik Levämäki,M. Ropo,Song Lu,Lorand Delczeg,H L Zhang,Erna K. Delczeg‐Czirjak,Bertil Johansson,Levente Vitos
标识
DOI:10.1088/0953-8984/25/49/495501
摘要
We determine the interface energy and the work of separation of the Fe/Cr2O3 interface using first-principles density functional theory. Starting from different structures, we put forward a realistic interface model that is suitable to study the complex metal–oxide interaction. This model has the lowest formation energy and corresponds to an interface between Fe and oxygen terminated Cr2O3. The work of separation is calculated to be smaller than the intrinsic adhesion energy of pure Fe or Cr2O3, suggesting that stainless steel surfaces should preferentially break along the metal–oxide interface. The relative stabilities and magnetic interactions of the different interfaces are discussed. Next we introduce Cr atoms into the Fe matrix at different positions relative to the interface. We find that metallic Cr segregates very strongly to the (FeCr)/Cr2O3 interface, and increases the separation energy of the interface, making the adhesion of the oxide scale mechanically more stable. The Cr segregation is explained by the enthalpy of formation.
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