An investigation of the lamellar-rod transition in binary eutectic using multi-phase field model

Yu Juan Yang, Jin Cheng Wang, Yu Xiang Zhang, Yao Chan Zhu, Gen Cang Yang

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Abstract

The KKSO multi-phase field model is employed to simulate the lamellar-rod transition with different pulling velocities and different solute diffuse coefficients in liquid. The simulation results show that the eutectic keeps lamellar growth after lamellar merging at small pulling velocity. With an increase of the pulling velocity, the lamellar eutectic transits to rod-like eutectic after lamellar merging. And the further increase of the pulling velocity will make the lamellar grow steadily with its initial lamellar spacing. It's also found that the simulations of different solute diffusion coefficients in liquid are similar to those of different velocities and the transition from lamellar eutectic to rod-like takes place only in a certain range of each parameter. All of the simulated results are in agreement with the experiments qualitatively.

Original languageEnglish
Pages (from-to)650-654
Number of pages5
JournalWuli Xuebao/Acta Physica Sinica
Volume58
Issue number1
StatePublished - Jan 2009

Keywords

  • Lamellar-rod transition
  • Multi-phase field
  • Numerical simulation

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