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Magnetic Phase Transition, Elastic and Thermodynamic Properties of L12-(Ni,Cu)3(Al,Fe,Cr) in 3d High-Entropy Alloys

机译:3D高熵合金中L12-(Ni,Cu)3(Al,Fe,Cr)的磁相转变,弹性和热力学性能

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摘要

The phase stability and elastic properties of paramagnetic (PM), ferromagnetic (FM) and antiferromagnetic (AFM) phases in L12-(Ni,Cu)3(Al,Fe,Cr) alloy are first investigated using the exact muffin-tin orbitals (EMTO) method in combination with the coherent potential approximation (CPA). The result shows the AFM structure phase of the three is the most stable in the ground state. Calculated elastic constants show that all the phases are mechanically stable, and have uncovered that L12-(Ni,Cu)3(Al,Fe,Cr) can achieve good strength and ductility simultaneously. Then, crucial thermal properties are described satisfactorily using the Debye–Grüneisen model, showing heat capacity, Gibbs free energy G, the competitive contribution of entropy −TS and enthalpy H exhibiting significant temperature dependences. Moreover, the magnetic phase transition thermodynamics was studied, which suggests that −TS has a primary contribution to Gibbs free energy and may play a key role in the phase transition. The present results can benefit the understanding of the mechanical, thermodynamic and magnetic properties of the L12 structure phase in 3d high-entropy alloys.
机译:首先使用精确的松饼 - 锡轨道研究L12-(Ni,Cu)3(Al,Fe,Cr)合金中的顺磁性(PM),铁磁性(FM)和反铁磁性(AFM)相的相位稳定性和弹性性能( EMTO)方法与相干电位近似(CPA)结合。结果表明,三个的AFM结构阶段是基地中最稳定的。计算的弹性常数表明,所有相的所有相位都是机械稳定的,并且未发现L12-(Ni,Cu)3(Al,Fe,Cr)可以同时实现良好的强度和延展性。然后,使用Debye-Grüneisen模型令人满意地描述了至关重要的热性能,显示出热容量,Gibbs自由能量G,熵--TS的竞争贡献和焓H表现出显着的温度依赖性。此外,研究了磁相过渡热力学,这表明-TS对Gibbs自由能具有主要贡献,并且可以在相转变中发挥关键作用。本结果可以使3D高熵合金中L12结构相的机械,热力学和磁性有益于理解。

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