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Experimental investigation and thermodynamic description of the Li-Si-Mn ternary system

机译:LI-SI-MN三元系统的实验研究和热力学描述

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The 150 degrees C isothermal section of Li-Si-Mn ternary system has been investigated experimentally and extrapolated using the optimized thermodynamic parameters from the constitutive binary systems. About 30 ternary alloys were examined by means of scanning electron microscopy with energy dispersive spectroscopy (SEM-EDS) and X-ray diffraction (XRD). Nine three-phase regions have been detected, i.e. Li12Si7+Mn11Si19+(Si), Li12Si7+MnSi+Mn11Si19, Li7Si3+Mn5Si3+MnSi, Li7Si3+Mn5Si3+Li13Si4, Li22Si5+Mn5Si3+Mn3Si, Li22Si5+Mn3Si+Mn9Si2, Li22Si5+Mn9Si3+Mn6Si, Li22Si5+Mn6Si+(Li) and (Li)+(alpha Mn)+Mn6Si. No ternary compound has been observed for this ternary system. Furthermore, thermodynamic assessment of Li-Mn binary system has been carried out with the CALPHAD approach on the basis of the experimental data. And the thermodynamic parameters of the Si-Mn system from literature have been revised. The compounds MnSi1.75-x and MnSi were simply modeled by the sublattice models as (Mn)(11)(Si)(19) and (Mn)(1)(Si)(1) respectively to adapt to the multicomponent system. Thermodynamic extrapolation of the Li-Si-Mn ternary system showed good agreement with the experimental phase relationships. (C) 2018 Elsevier B.V. All rights reserved.
机译:通过从本构二进制系统实验研究了Li-Si-Mn三元系的150摄氏度的Li-Si-Mn三元系的等温截面,并用来自本构二进制系统的优化热力学参数来研究。通过扫描电子显微镜与能量分散光谱(SEMEDS)和X射线衍射(XRD)进行约30个三元合金。已检测到九个三相区域,即Li 12 Si7 + Mn11si19 +(Si),Li 12 Si7 + MnSi + Mn11Si19,Li7Si3 + Mn5Si3 + MNSI,Li7Si3 + Mn5Si3 + Li13Si4,Li 2 2 Si5 + Mn5Si3 + Mn3Si,Li22Si5 + Mn3Si + Mn9Si2,Li22Si5 + Mn9Si3 + Mn6Si,Li22Si5 + Mn6Si +(Li)和(Li)+(alpha Mn)+ Mn6Si。对于该三元系统,没有观察到三元化合物。此外,在实验数据的基础上,Calphad方法进行了Li-Mn二元系统的热力学评估。从文献中的Si-Mn系统的热力学参数已经修改。化合物MNSI1.75-X和MNSI仅被子分子模型为(MN)(11)(Si)(19)和(1)(1)(1)分别以适应多组分系统。 Li-Si-Mn三元体系的热力学外推与实验相位关系吻合良好。 (c)2018年elestvier b.v.保留所有权利。

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