English

Energy-composition relations in Ni$_3$(Al$_{1-x}$X$_x$) phases

Materials Science 2023-06-22 v2 Other Condensed Matter Applied Physics Chemical Physics Computational Physics

Abstract

The secondary phase, such as Ni3_3Al-based L12L1_2 γ\gamma^\prime, is crucially important for precipitation strengthening of superalloys. Composition-structure-property relations provide useful insights for guided alloy design. Here we use density functional theory combined with the multiple scattering theory to compute dependencies of the structural energies and equilibrium volumes versus composition for ternary Ni3_3(Al1x_{1-x}Xx_x) alloys with X=(Ti, Zr, Hf; V, Nb, Ta; Cr, Mo, W) in L12L1_2, D024D0_{24}, and D019D0_{19} phases with a homogeneous chemical disorder on the (Al1x_{1-x}Xx_x) sublattice. Our results provide a better understanding of the physics in Ni3_3Al-based precipitates and facilitate design of next-generation nickel superalloys with precipitation strengthening.

Keywords

Cite

@article{arxiv.2304.06869,
  title  = {Energy-composition relations in Ni$_3$(Al$_{1-x}$X$_x$) phases},
  author = {Nikolai A. Zarkevich and Timothy M. Smith and John W. Lawson},
  journal= {arXiv preprint arXiv:2304.06869},
  year   = {2023}
}

Comments

12 pages, 5 figures