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Mechanical isotropy of heterogeneous octahedral materials

2026/07/31 by Jehoon Moon, Seunghwan Lee, Gisoo Lee +2
Physics and Astronomy · #cond-mat.soft #cond-mat.mtrl-sci

paper · pdf

21 pages, 9 figures (7 in the main text, 2 in the appendix), 2 tables

arxiv created 2026/07/31 · arxiv updated 2026/08/03

Abstract

An octahedral network has been widely used as a fundamental building block for diverse architected materials. Here, we demonstrate that heterogeneous octahedral materials can achieve complete elastic isotropy at a critical constituent volume fraction, nearly independent of the constituent stiffness ratio. The anisotropy ratio, a, transitions from a > 1 to a < 1 at the critical constituent volume fraction, due to a change in the dominant deformation modes. Microstructural analysis reveals that the geometry and connectivity of the heterogeneous octahedral materials are very similar to those of heterogeneous materials constructed on combined simple cubic (SC) and body-centered cubic (BCC) lattices exhibiting opposite elastic anisotropy. More importantly, we demonstrate that varying the constituent volume fractions in the octahedral materials governs elastic anisotropy, similarly to tuning the BCC-to-SC composition ratio in the SC-BCC materials widely employed for designing mechanically isotropic architected materials. The mechanical isotropy of the heterogeneous octahedral materials is further assessed using 3D-printed prototypes.

Citations