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Thermodynamic optimization of the Mn-P and Fe-Mn-P systems

机译:Mn-P和Fe-Mn-P系统的热力学优化

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Thermodynamic modeling of the Mn-P and Fe-Mn-P systems in the full composition was carried out using the CALculation of PHAse Diagrams (CALPHAD) method based on the critical evaluation of all available phase equilibria and thermodynamic data. The liquid and solid solutions were described using the Modified Quasichemical Model and Compound Energy Formalism, respectively. The Gibbs energies of the binary stoichiometric iron and manganese phosphides were determined based on reliable experimental data. The ternary (Fe, Mn)(3)P, (Fe,Mn)(2)P and (Fe,Mn)P phosphides were modeled as solid solutions with mutual substitution between Fe and Mn atoms. The Gibbs energy of the liquid solution was predicted using the Toop interpolation technique with P as an asymmetric component, without any ternary parameters. The thermodynamic properties of P in the entire composition region and the liquidus of the ternary system were well reproduced. Based on the thermodynamic models with optimized parameters, unexplored phase diagrams and thermodynamic properties of the Fe-Mn-P system were predicted.
机译:基于对所有可用相平衡和热力学数据的临界评估,使用相图计算(CALPHAD)方法对全组分中的Mn-P和Fe-Mn-P系统进行热力学建模。分别用修正的准化学模型和复合能形式描述了液相和固溶体。根据可靠的实验数据测定了二元化学计量比的磷化铁和磷化锰的吉布斯能。三元(Fe,Mn)(3)P,(Fe,Mn)(2)P和(Fe,Mn)P磷化物被模拟为Fe和Mn原子相互取代的固溶体。在没有任何三元参数的情况下,以P为不对称组分,采用Toop插值技术预测了液体溶液的吉布斯能。P在整个组成区和三元系液相线的热力学性质得到了很好的再现。基于优化参数的热力学模型,预测了Fe-Mn-P体系未探索的相图和热力学性质。

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