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首页> 外文期刊>Computational Materials Science >Microscopic phase-field study for mechanisms of directional coarsening and the transformation of rafting types in Ni-Al-V ternary alloys
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Microscopic phase-field study for mechanisms of directional coarsening and the transformation of rafting types in Ni-Al-V ternary alloys

机译:Ni-Al-V三元合金定向粗化和漂流类型转变机理的微观相场研究

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Directional coarsening (rafting) of precipitates and transformation on rafting type under stress are investigated by computer simulations for Ni-Al-V ternary alloys. The simulation technique is based on a microscopic phase-field model that characterizes simultaneously the spatiotemporal evolution of both precipitate microstructures and occupation probabilities. The initial configurations consisting of cubical γ′ and tetragonal θ are constructed according to experimental observations and microscopic phase-field simulation. For a given state of the lattice misfit and external load, the predicted rafted precipitates and the transformation from P-type rafting to N-type rafting with stress agree well with the experimental observations. This indicates that stress plays an important role in directional coarsening, which may promote or block the diffusion for atoms in different directions. The evolution of directional coarsening both in space and in time for solute atoms caused by the coupling of external load and misfit stress and precipitation is evaluated from morphologies and occupation probabilities, from which the diffusion of atoms is analyzed.
机译:通过计算机模拟Ni-Al-V三元合金,研究了析出物的定向粗化(漂流)和应力作用下的漂流类型转变。该模拟技术基于微观相场模型,该模型同时表征了析出物微观结构和占有概率的时空演化。根据实验观察和微观相场模拟,构造了由立方γ'和四方θ组成的初始构型。对于给定状态的晶格失配和外部载荷,预测的筏式沉淀和应力作用下从P型筏向N型筏的转化与实验观察结果非常吻合。这表明应力在定向粗化中起重要作用,这可能会促进或阻止原子在不同方向上的扩散。从形貌和占有概率评估了外载荷与失配应力和沉淀的耦合引起的溶质原子在空间和时间上定向粗化的演变,并从中分析了原子的扩散。

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