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Crystal-melt interfacial free energies in hcp metals: A molecular dynamics study of Mg

  • D. Y. Sun*
  • , M. I. Mendelev
  • , C. A. Becker
  • , K. Kudin
  • , Tomorr Haxhimali
  • , M. Asta
  • , J. J. Hoyt
  • , A. Karma
  • , D. J. Srolovitz
  • *此作品的通讯作者
  • Ames Laboratory
  • Northwestern University
  • Princeton University
  • Northeastern University
  • University of California at Davis
  • Sandia National Laboratories, New Mexico

科研成果: 期刊稿件文章同行评审

摘要

Crystal-melt interfacial free energies (γ) are computed for hcp Mg by employing equilibrium molecular-dynamics (MD) simulations and the capillary-fluctuation method (CFM). This work makes use of a newly developed embedded-atom-method (EAM) interatomic potential for Mg fit to crystal, liquid, and melting properties. We describe how the CFM, which has previously been applied to cubic systems only, can be generalized for studies of hcp metals by employing a parametrization for the orientation dependence of γ in terms of hexagonal harmonics. The method is applied in the calculation of the Turnbull coefficient (α) and crystalline anisotropies of γ. We obtain a value of α=0.48, with interfacial free energies for different high-symmetry orientations differing by approximately 1%. These results are compared to those obtained in previous MD-CFM studies for cubic EAM metals as well as experimental studies of solid-liquid interfaces in hcp alloys. In addition, the implications of our results for the prediction of dendrite growth directions in hcp metals are discussed.

源语言英语
文章编号024116
期刊Physical Review B - Condensed Matter and Materials Physics
73
2
DOI
出版状态已出版 - 2006

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