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First-principles calculation of phase equilibria and phase separation of the Fe-Ni alloy system 被引量:2

First-principles calculation of phase equilibria and phase separation of the Fe-Ni alloy system
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摘要 Theoretical investigation of the phase equilibria of the Fe-Ni alloy has been performed by combining the FLAPW total energy calculations and the Cluster Variation Method through the Cluster Expansion Method. The calcula- tions have proved the stabilization of the L12 phase at 1:3 stoichiometry, which is in agreement with the experimental result, and predicted the existence of L10 as a stable phase below 550 K; this L10 phase has been missing in the conventional phase diagram. The calculations are extended to the Fe-rich region that is characterized by a wide range phase separation and has drawn considerable attention because of the intriguing Invar property associated with a Fe concentration of 65%. To reveal the origin of the phase separation, a P-V curve in an entire concentration range is derived by the second derivative of free energy functional of the disordered phase with respect to the volume. The calculation confirmed that the phase separation is caused by the breakdown of the mechanical-stability criterion. The newly calculated phase separation line combined with the L10 and L12 order-disordered phase boundaries provides phase equilibria in the wider concentration range of the system. Furthermore, a coefficient of thermal expansion (CTE) is attempted by incorporating the thermal vibration effect through harmonic approximation of the Debye–Gruneisen model. The Invar behavior has been reproduced, and the origin of this anomalous volume change has been discussed. Theoretical investigation of the phase equilibria of the Fe-Ni alloy has been performed by combining the FLAPW total energy calculations and the Cluster Variation Method through the Cluster Expansion Method. The calculations have proved the stabilization of the LIE phase at 1:3 stoichiometry, which is in agreement with the experimental result, and predicted the existence of L1 0 as a stable phase below 550 K; this L1 0 phase has been missing in the conventional phase diagram. The calculations are extended to the Fe-rich region that is characterized by a wide range phase separation and has drawn considerable attention because of the intriguing Invar property associated with a Fe concentration of 65%. To reveal the origin of the phase separation, a P-V curve in an entire concentration range is derived by the second derivative of free energy functional of the disordered phase with respect to the volume. The calculation confirmed that the phase separation is caused by the breakdown of the mechanical-stability criterion. The newly calculated phase separation line combined with the L1 0 and L12Eorder-disordered phase boundaries provides phase equilibria in the wider concentration range of the system. Furthermore, a coefficient of thermal expansion (CTE) is attempted by incorporating the thermal vibration effect through harmonic approximation of the Debye-Gruneisen model. The Invar behavior has been reproduced, and the origin of this anomalous volume change has been discussed.
出处 《Rare Metals》 SCIE EI CAS CSCD 2006年第5期437-440,共4页 稀有金属(英文版)
关键词 铁-镍合金系统 有序-无序 晶格排列 分离 磁学 基本原理计算 簇扩展讲法 Debye-Gruneisen模型 Fe-Ni alloy system order-disorder separation magnetism first-principles calculations cluster variation method cluster expansion method Debye-Gruneisen model
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参考文献23

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同被引文献45

  • 1蒋敏,郝士明.二元固溶体混合熵的集团变分法研究[J].科学通报,1993,38(5):471-474. 被引量:2
  • 2Tetsuo Mohri,Daisuke Hamajima,Ying Chen.Deviation of congruent composition in Fe-Pd system[J].Rare Metals,2006,25(5):393-398. 被引量:1
  • 3杨青青,熊惟皓,张杰.Au-Ti足金的强化机理研究(英文)[J].稀有金属材料与工程,2006,35(12):1904-1907. 被引量:5
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