首页> 外文会议>The 5th International Conference on Physical and Numerical Simulation of Materials Processing: Abstracts Program >Simulation for the Precipitation Process of Ordered Intermetallic Compounds in Binary and Ternary Ni-Al Based Alloys by Phase-Field Model
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Simulation for the Precipitation Process of Ordered Intermetallic Compounds in Binary and Ternary Ni-Al Based Alloys by Phase-Field Model

机译:相场模型模拟二元和三元Ni-Al基合金中有序金属间化合物的析出过程

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With the microscopic Phase-Field Model (PFM), the atomic-scale computer simulation programs for the precipitation mechanism of the ordered intermetallic compound γ′ in binary Ni-15.5at. %Al alloy, θ and γ′ in ternary Ni75AlxV25-x alloys were worked out based on the microscopic diffusion equation and nonequilibrium free energy. It can be applied to the whole precipitation process and composition range. A prior assumptions on the new phase structure or transformation path was unnecessary, the possible nonequilibrium phases, atomic clustering and ordering could be described automatically, and atomic images, order parameters and volume fractions of precipitates were obtained. Computer simulation was performed systematically on the precipitation mechanism, precipitation sequence of θ and γ′ in complicated system with ordering and clustering simultaneously. Through the simulated atomic images and composition order parameters of precipitates, we can explain the complex precipitation mechanisms of θ (Ni3V) and γ′ (Ni3Al) ordered phases. For the binary alloy, the precipitation mechanism of γ′ phase has the characteristic of both non-classical nucleation + growth (NCNG) and congruent ordering + spinodal decomposition (COSD). For the ternary alloys, the precipitation characteristic of γ′ phase transforms from NCNG to COSD gradually, otherwise, the precipitation characteristic of θ phase transforms from COSD to NCNG mechanism gradually.
机译:借助微观相场模型(PFM),原子级计算机模拟程序可对二元Ni-15.5at中有序金属间化合物γ'的沉淀机理进行研究。基于微观扩散方程和非平衡自由能,计算了三元Ni75AlxV25-x合金中的%Al合金,θ和γ'。它可以应用于整个沉淀过程和组成范围。无需对新的相结构或转变路径进行事先假设,可以自动描述可能的非平衡相,原子团簇和有序化,并获得了原子图像,有序参数和沉淀物的体积分数。系统地对复杂系统中的析出机理,θ和γ′的析出顺序,聚类进行了系统的计算机模拟。通过模拟的原子图像和析出物的组成顺序参数,我们可以解释θ(Ni3V)和γ'(Ni3Al)有序相的复杂析出机理。对于二元合金,γ'相的析出机理具有非经典成核+生长(NCNG)和全序有序+旋节线分解(COSD)的特征。对于三元合金,γ'相的析出特征逐渐由NCNG转变为COSD,否则,θ相的析出特征逐渐由COSD转变为NCNG。

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