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Based on the hybridization concept, the metallurgy-inspired lattice design can control the failure modes or shear-banding paths of lattice by introducing the strengthening mechanism. Pham et al. [31] designed and fabricated a polycrystalline latti...

Overall, the application of metallurgical principles and understanding of microstructural deformation behaviors to lattice structure design has led to significant improvements in mechanical properties, such as strength, stiffness, and energy absorption efficiency. The controllability of the shear-banding path and local deformation pattern is a key advantage of lattice structures, allowing for tailored designs to achieve specific performance goals. Additionally, incorporating defects and multi-scale analysis can further improve our understanding of the mechanical behavior of lattice structures and guide future design efforts.

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