Lattice softening in body-centered-cubic lithium-magnesium alloys

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Abstract

A first-principles investigation of the influence of lattice softening on lithium-magnesium alloys near the body-centered-cubic (bcc)/hexagonal close-packed (hcp) transition composition is presented. Results show that lithium-magnesium alloys display a softening of the shear modulus C11-C12, and an acoustic phonon branch between the Γ and N high symmetry points, as the composition approaches the stability limit for the bcc phase. This softening is accompanied by an increase in the size of the dislocation core region. Ideal tensile strength calculations predict that ordered phases of lithium-magnesium alloys are intrinsically brittle. Methods to make the alloys more ductile are discussed, and the propensity for these alloys to display gum-metal-like behavior is assessed.

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Winter, I. S., Tsuru, T., & Chrzan, D. C. (2017). Lattice softening in body-centered-cubic lithium-magnesium alloys. Physical Review Materials, 1(3). https://doi.org/10.1103/PhysRevMaterials.1.033606

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