4.7 Article

Grain boundary energies in body-centered cubic metals

Journal

ACTA MATERIALIA
Volume 88, Issue -, Pages 346-354

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.actamat.2015.01.069

Keywords

Grain boundaries; Grain boundary energy; bcc metals; Atomistic calculations

Funding

  1. Office of Naval Research under MURI [N00014-11-1-0678]
  2. U.S. Department of Energy [DE-AC02-05CH11231]
  3. US DOE Office of Basic Energy Sciences, Division of Materials Sciences and Engineering
  4. National Science Foundation [DMR-1307138]
  5. Division Of Materials Research
  6. Direct For Mathematical & Physical Scien [1307138] Funding Source: National Science Foundation

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Atomistic simulations using the embedded atom method were employed to compute the energies of 408 distinct grain boundaries in bcc Fe and Mo. This set includes grain boundaries that have tilt, twist, and mixed character and coincidence site lattices ranging from Sigma 3 to Sigma 323. The results show that grain boundary energies in Fe and Mo are influenced more by the grain boundary plane orientation than by the lattice misorientation or lattice coincidence. Furthermore, grain boundaries with (110) planes on both sides of the boundary have low energies, regardless of the misorientation angle or geometric character. Grain boundaries of the same type in Fe and Mo have strongly correlated energies that scale with the ratio of the cohesive energies of the two metals. (c) 2015 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.

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