Computational Materials Science2022,Vol.2038.DOI:10.1016/j.commatsci.2021.111143

p Phase-field study on an array of tilted columnar dendrites during the directional solidification of a binary alloy

Takaki, Tomohiro Sakane, Shinji Ohno, Munekazu Shibuta, Yasushi Aoki, Takayuki
Computational Materials Science2022,Vol.2038.DOI:10.1016/j.commatsci.2021.111143

p Phase-field study on an array of tilted columnar dendrites during the directional solidification of a binary alloy

Takaki, Tomohiro 1Sakane, Shinji 1Ohno, Munekazu 2Shibuta, Yasushi 3Aoki, Takayuki4
扫码查看

作者信息

  • 1. Kyoto Inst Technol
  • 2. Hokkaido Univ
  • 3. Univ Tokyo
  • 4. Tokyo Inst Technol
  • 折叠

Abstract

An array of columnar dendrites is important to the microsegregation and permeability of interdendritic liquid flow. In this study, an array of tilted columnar dendrites growing during the directional solidification of a binary alloy was investigated via large-scale phase-field simulation. The main conclusion is that the hexagonal array is the dominant array for reasonably tilted dendrites as well as dendrites that grow along the temperature gradient. It is also concluded that the array ordering gradually improves with growth for all tilt angles, and the ordering rate is faster for a small tilt angle.

Key words

Tilted columnar dendrites/Dendrite array/Directional solidification/Phase-field method/High-performance computing/COMPETITIVE GRAIN-GROWTH/PENTA-HEPTA DEFECT/MORPHOLOGY/PERMEABILITY/SIMULATIONS/INTERFACE/FLOW/MICROSTRUCTURES/ANISOTROPY/MECHANISM

引用本文复制引用

出版年

2022
Computational Materials Science

Computational Materials Science

EISCI
ISSN:0927-0256
被引量7
参考文献量55
段落导航相关论文