Choi Youngwon, Dong Zhihua, Li Wei, Lizárraga Raquel, Kwon Se-Kyun, Vitos Levente
Applied Materials Physics, Department of Materials Science and Engineering, Royal Institute of Technology, SE-10044 Stockholm, Sweden.
State Key Laboratory of Mechanical Transmissions, College of Materials Science and Engineering, Chongqing University, Chongqing 400044, China.
Materials (Basel). 2022 Feb 9;15(4):1276. doi: 10.3390/ma15041276.
The hexagonal close-packed (hcp) phase of iron is unstable under ambient conditions. The limited amount of existing experimental data for this system has been obtained by extrapolating the parameters of hcp Fe-Mn alloys to pure Fe. On the theory side, most density functional theory (DFT) studies on hcp Fe have considered non-magnetic or ferromagnetic states, both having limited relevance in view of the current understanding of the system. Here, we investigate the equilibrium properties of paramagnetic hcp Fe using DFT modelling in combination with alloy theory. We show that the theoretical equilibrium c/a and the equation of state of hcp Fe become consistent with the experimental values when the magnetic disorder is properly accounted for. Longitudinal spin fluctuation effects further improve the theoretical description. The present study provides useful data on hcp Fe at ambient and hydrostatic pressure conditions, contributing largely to the development of accurate thermodynamic modelling of Fe-based alloys.
铁的六方密堆积(hcp)相在环境条件下是不稳定的。该体系现有的实验数据有限,是通过将hcp铁 - 锰合金的参数外推至纯铁而获得的。在理论方面,大多数关于hcp铁的密度泛函理论(DFT)研究都考虑了非磁性或铁磁态,鉴于目前对该体系的理解,这两种状态的相关性都有限。在此,我们结合合金理论,利用DFT建模研究顺磁hcp铁的平衡性质。我们表明,当适当考虑磁无序时,hcp铁的理论平衡c/a和状态方程与实验值变得一致。纵向自旋涨落效应进一步改善了理论描述。本研究提供了在环境压力和静水压力条件下hcp铁的有用数据,对铁基合金精确热力学模型的发展做出了很大贡献。