4.7 Article

Stability of eutectic carbide in Fe-Cr-Mo-W-V-C alloy by first-principles calculation

Journal

MATERIALS & DESIGN
Volume 106, Issue -, Pages 355-362

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.matdes.2016.05.119

Keywords

Eutectic structure; Stability; First principles; Fe-Cr-Mo-W-V-C alloy

Funding

  1. National Natural Science Foundation of China [51271163, 51471148]
  2. Hebei Province Basic Research Foundation of China [16961008D]

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The structural, electronic and mechanical properties of identified eutectic carbides of the self-designed Fe-Cr-Mo-W-V-C alloy were calculated by first-principles. The interfacial energies of gamma-Fe/MXC (M = V, W or Mo) interfaces and the elastic energies were also considered to determine the stability of the carbides. The typical microstructures of this alloy at 1240 degrees C and 1200 degrees C were observed. The calculated results show that the formation energies of VC, WC and V2C are all negative, and the absolute value of V2C is the smallest, while that of Mo2C is positive. The density of states (DOS) values of VC and WC at the Fermi level are lower than those of V2C and Mo2C. The elastic constants of VC, WC and V2C are satisfied with their corresponding mechanical stability criteria, instead of Mo2C The adhesion work W-ad of gamma-Fe/MC interface model is larger than that of gamma-Fe/M2C one, while the interfacial energy of gamma-Fe/MC interface model is lower than that of gamma-Fe/M2C one. The binding strength of gamma-Fe/MC interfaces is larger than that of gamma-Fe/M2C ones, while the elastic energy of gamma-Fe/MC interface is smaller than that of gamma-Fe/M2C one. From first-principles calculations, eutectic MC is more stable than eutectic M2C. (C) 2016 Elsevier Ltd. All rights reserved.

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