首页> 外文期刊>Advances in materials science and engineering >Experimental Study of Phase Composition of B-Fe-Mn-V Alloys and Thermodynamic Calculations of Phase Equilibria in the B-Mn-V and B-Fe-Mn-V Systems
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Experimental Study of Phase Composition of B-Fe-Mn-V Alloys and Thermodynamic Calculations of Phase Equilibria in the B-Mn-V and B-Fe-Mn-V Systems

机译:B-Fe-Mn-V合金相组成的实验研究及B-Mn-V和B-Fe-Mn-V系统中相平衡的热力学计算

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Phase compositions of B-Fe-Mn-V alloys were studied by several experimental methods (DTA measurement, X-ray diffractions, and scanning electron microscopy). Besides the experimental study of the quaternary system, thermodynamic modelling of the ternary B-Mn-V system by the Calphad method and thermodynamic calculations for the quaternary B-Fe-Mn-V system were performed. Calculations for the quaternary system are based on the ternary subsystems (B-Mn-V, B-Fe-V, B-Fe-Mn, and Fe-Mn-V). Boron is modelled as an interstitial element in all solid solutions of vanadium, manganese, and iron. Very good agreement between experimental results and thermodynamic calculations was achieved. The created thermodynamic database is suitable for thermodynamic calculations of phase diagrams for all the ternary subsystems and also for the B-Fe-Mn-V quaternary system.
机译:通过几种实验方法(DTA测量,X射线衍射和扫描电子显微镜)研究了B-Fe-Mn-V合金的相组成。除了对四元体系的实验研究外,还利用Calphad方法对三元B-Mn-V体系进行了热力学建模,并对四元B-Fe-Mn-V体系进行了热力学计算。四元系统的计算基于三元子系统(B-Mn-V,B-Fe-V,B-Fe-Mn和Fe-Mn-V)。硼被模拟为钒,锰和铁的所有固溶体中的间隙元素。实验结果和热力学计算之间取得了很好的一致性。创建的热力学数据库适用于所有三元子系统以及B-Fe-Mn-V四元系统的相图热力学计算。

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