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Numerical Simulation of Spinodal Deposition in Cu-6at.Ni-3at.Si Ternary Alloy Using of Phase-Field Method

机译:相场法数值模拟Cu-6at%Ni-3at%Si三元合金中的旋节线沉积

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Based on Cahn-Hilliard nonlinear diffusion equation, the phase-field model has been established for ternary alloy spinodal decomposition, which directly couples with Calphad thermodynamics and dynamics calculation and takes into account the effect of the coherent elastic energy. The simulated microstructures of spinodal decomposition were carried out in the isothermally-aged of Cu-6at.%Ni-3at.%Si alloy. The results indicate that the spinodal decomposition takes place at the early stage of Cu-6at.%Ni-3at.%Si alloy aging at temperatures of 723K, forming two-phases mixture of Cu-rich and Ni/Si-rich, and the decomposition microstructures are distributed in a semi-interconnected labyrinth-like form. Under the effect of the coherent elastic energy, the decomposition microstructures demonstrate the obvious anisotropic characteristics, and present interconnected rectangular stripes aligned along [10] and [01] directions. The growth of the decomposition microstructures is in accordance with the growth law of growth exponent n≈0.29, slightly less than the LSW's prediction.
机译:基于Cahn-Hilliard非线性扩散方程,建立了三元合金旋节线分解的相场模型,该模型直接与Calphad热力学和动力学计算耦合,并考虑了相干弹性能的影响。在等温Cu-6at。%Ni-3at。%Si合金的等温时效过程中,模拟了旋节线分解的微观组织。结果表明,在723K温度下,Cu-6at。%Ni-3at。%Si合金的早期时效发生了旋节线分解,形成了富Cu和富Ni / Si的两相混合物。分解的微观结构以半互连的迷宫状分布。在相干弹性能的作用下,分解微观结构表现出明显的各向异性特征,并呈现出沿[10]和[01]方向排列的相互连接的矩形条纹。分解微结构的生长符合生长指数n≈0.29的生长规律,略小于LSW的预测。

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