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首页> 外文期刊>ISIJ international >Large-scale Phase-field Studies of Three-dimensional Dendrite Competitive Growth at the Converging Grain Boundary during Directional Solidification of a Bicrystal Binary Alloy
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Large-scale Phase-field Studies of Three-dimensional Dendrite Competitive Growth at the Converging Grain Boundary during Directional Solidification of a Bicrystal Binary Alloy

机译:双晶二元合金定向凝固过程中会聚晶界处三维枝晶竞争生长的大规模相场研究

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Large-scale phase-field studies of three-dimensional (3D) dendrite competitive growth at the converging grain boundary (GB) of a bicrystal binary alloy were carried out using the GPU-rich supercomputer TSUBAME 2.5 at Tokyo Institute of Technology. First, a series of thin-sample simulations were performed to investigate the effects of thin-sample thickness, unfavorably oriented (UO) grain inclination angle, and dendrite arrangement on an unusual overgrowth phenomenon whereby the favorably oriented (FO) grain is overgrown by the UO grain. It was concluded that the unusual overgrowth easily occurs as the thickness of the thin sample and the UO grain inclination angle decrease. It was also concluded that the interaction between FO and UO dendrites at the converging GB depends on the dendrite arrangement for relatively large dendrite spacing. Next, realistic large-scale simulations whereby multiple dendrites interact at the converging GB were performed. Unusual overgrowth was also observed in such large-scale simulations, and this phenomenon easily occurred at smaller UO dendrite inclination angles. Furthermore, it was also concluded that the FO and UO dendrites rearrange toward a space-to-face interaction. Because the interaction between FO and UO dendrites differs according to the location on the GB, a zigzag GB was formed, especially at small UO grain inclination angles.
机译:使用位于东京工业大学的富含GPU的超级计算机TSUBAME 2.5对双晶二元合金的会聚晶界(GB)上的三维(3D)枝晶竞争生长进行了大规模的相场研究。首先,进行了一系列薄样品模拟,以研究薄样品厚度,取向不良(UO)晶粒倾斜角和枝晶排列对异常过长现象的影响,由此,取向良好(FO)的晶粒会过度生长。 UO谷物。结论是,随着薄样品的厚度和UO晶粒倾斜角的减小,异常的过度生长很容易发生。还得出结论,在会聚的GB处FO和UO树突之间的相互作用取决于相对较大的树突间距的树突排列。接下来,进行了现实的大规模模拟,其中多个树突在会聚的GB处相互作用。在这样的大规模模拟中也观察到了异常的过度生长,并且这种现象很容易在较小的UO枝晶倾斜角处发生。此外,还得出结论,FO和UO的树枝状晶体重新排列,朝着空间面对面的相互作用。由于FO和UO树枝状晶体之间的相互作用因GB上的位置而异,因此形成了锯齿形GB,尤其是在小UO晶粒倾斜角下。

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