4.5 Article

Elastic properties of 4d transition metal alloys: Values and trends

期刊

COMPUTATIONAL MATERIALS SCIENCE
卷 159, 期 -, 页码 273-280

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/j.commatsci.2018.12.027

关键词

Exact muffin-tin orbital method; 4d transition metals; Binary alloys; Elastic constants; First-principles; Structural properties

资金

  1. Swedish Research Council
  2. Swedish Foundation for Strategic Research
  3. Swedish Foundation for International Cooperation in Research and Higher Education
  4. Carl Tryggers Foundation
  5. Erasmus Mundus External Cooperation Lot3
  6. Hungarian Scientific Research Fund [OTKA 128229]

向作者/读者索取更多资源

Using the Exact Muffin-Tin Orbitals method within the Perdew-Burke-Ernzerhof exchange-correlation approximation for solids and solid surfaces (PBEso1), we study the single crystal elastic constants of 4d transition metals (atomic number Z between 39 and 47) and their binary alloys in the body centered cubic (bcc) and face centered cubic (fcc) structures. Alloys between the first neighbors Z(Z + 1) and between the second neighbors Z(Z + 2) are considered. The lattice constants, bulk moduli and elastic constants are found in good agreement with the available experimental and theoretical data. It is shown that the correlation between the relative tetragonal shear elastic constant C-fcc'-2C(bcc)' and the structural energy difference between the fcc and bcc lattices Delta E is superior to the previously considered models. For a given crystal structure, the equiatomic Z(Z + 2) alloys turn out to have similar structural and elastic properties as the pure elements with atomic number (Z + 1). Furthermore, alloys with composition Z(1-x)(Z + 2)(x) possess similar properties as Z(1-2x)(Z + 1)(2x). The present theoretical data on the structural and the elastic properties of 4d transition metal alloys provides consistent input for coarse scale modeling of material properties.

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