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Thermodynamic Calculation of Al-Cu Eutectic alloy with Microstructure Simulation using Phase Field Method

机译:使用相场法测定微观结构模拟的Al-Cu共晶合金的热力学计算

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Phase-field method can be used to describe the complicated morphologies of crystal growth without explicitly tracking the complex phase boundaries. The conformation of volume free energy is very important for microstructure simulation with phase-field method. However, the conformation of volume free energy is still correspondingly simple and ideal at present. In this paper, a new conformation method of free energy is mentioned. Free energy of each phase at appointed states is calculated by Thermo-Calc software. In order to avoided calculation, free energy of each phase is fitted by multiple-point function according to sub-regular solution model. It is obtained that the free energy data and phase graph data of α phase, θ phase and L phase in the extension, temperature (791-841) K and component (0-35)Cu(at.%) with Al-Cu eutectic alloy. The new phase model is also founded, and used to calculate microstructure evolution of Al-Cu eutectic alloy.
机译:相现场方法可用于描述晶体生长的复杂形态,而不明确地跟踪复杂相边界。体积自由能的构象对于具有相场法的微观结构模拟非常重要。然而,目前储存量自由能量的构象仍然是相应的简单且理想的。本文提到了一种新的自由能的构象方法。通过Thermo-Calc软件计算每个阶段的每阶段的自由能。为了避免计算,根据子常规解决方案模型,通过多点功能拟合每个阶段的自由能。获得α相,θ相和L相的自由能数据和相位图数据在延伸,温度(791-841)k和组分(0-35)Cu(0-%)中与Al-Cu共晶合金。新的相模型也是成立的,并用于计算Al-Cu共晶合金的微观结构演变。

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