First principles calculations of electronic properties and mechanical properties of bcc molybdenum and niobium

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Abstract

The first principles calculations based on the density functional theory are performed to study the elastic properties and mechanical properties on Mo and Nb. It is found that the C 11, C 12 and C 44 of metal Mo and the C 11 and C 12 of Nb are consistent with that of the experimental value and other calculated results. However, C 44 of Nb is underestimated. In order to probe the reason why the C 44 would be underestimated by theoretical calculation, we calculated the density of sated and Fermi surface of metal Nb and Mo. It is found that the most probable reason of underestimate C 44 is related to the nesting properties of the Fermi surface which produce a Van Hove singularity in the electronic density of the state closed to the Fermi level. The ideal tensile strengths along [111] direction of bcc Mo and Nb is calculated. It is found that both materials exhibit dissimilar mechanical behaviors: The stress of Nb exists a turning point at the strain 8%, which is different from the behavior of Mo.

Original languageEnglish
Pages (from-to)354-358
Number of pages5
JournalRare Metals
Volume30
Issue numberSUPPL.1
DOIs
StatePublished - Mar 2011

Keywords

  • Elastic constants
  • First-principle
  • Ideal tensile strength
  • Nb and Mo

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