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首页> 外文期刊>Open Journal of Modelling and Simulation >Phase-Field Modeling for the Three-Dimensional Space-Filling Structure of Metal Foam Materials
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Phase-Field Modeling for the Three-Dimensional Space-Filling Structure of Metal Foam Materials

机译:金属泡沫材料三维空间填充结构的相场建模

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摘要

Phase-field modeling for three-dimensional foam structures is presented. The foam structure, which is generally applicable for porous material design, is geometrically approximated with a space-filling structure, and hence, the analysis of the space-filling structure was performed using the phase field model. An additional term was introduced to the conventional multi-phase field model to satisfy the volume constraint condition. Then, the equations were numerically solved using the finite difference method, and simulations were carried out for several nuclei settings. First, the nuclei were set on complete lattice points for a bcc or fcc arrangement, with a truncated hexagonal structure, which is known as a Kelvin cell, or a rhombic dodecahedron being obtained, respectively. Then, an irregularity was introduced in the initial nuclei arrangement. The results revealed that the truncated hexagonal structure was stable against a slight irregularity, whereas the rhombic polyhedral was destroyed by the instability. Finally, the nuclei were placed randomly, and the relaxation process of a certain cell was traced with the result that every cell leads to a convex polyhedron shape.
机译:提出了三维泡沫结构的相场建模。通常适用于多孔材料设计的泡沫结构在几何形状上采用空间填充结构进行近似,因此,使用相场模型对空间填充结构进行了分析。在常规的多相场模型中引入了一个附加术语来满足体积约束条件。然后,使用有限差分法对方程进行数值求解,并对几个原子核设置进行了仿真。首先,将原子核设置在用于bcc或fcc排列的完整晶格点上,分别具有被称为开尔文细胞的六边形六边形结构或获得的菱形十二面体。然后,在初始原子核排列中引入了不规则性。结果表明,截断的六边形结构对轻微的不规则性是稳定的,而菱形多面体由于不稳定性而被破坏。最后,将原子核随机放置,并追踪某个细胞的弛豫过程,结果每个细胞都导致凸多面体形状。

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