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Breaking better: How imperfections increase fracture resistance in architected lattices

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arxiv 2504.08873 v2 pith:T3FYKIPT submitted 2025-04-11 cond-mat.soft cond-mat.mtrl-sci

classification cond-mat.softcond-mat.mtrl-sci
keywords crackarchitectedfractureimperfectionslatticebrittlefailureincrease
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Fracture behavior in architected materials can be influenced by heterogeneities, yet the mechanisms by which imperfections affect crack propagation remain poorly understood. In this study, we introduce well-controlled, localized defects in the form of isolated missing struts to evaluate their impact on crack growth in brittle lattice specimens. Using mechanical testing combined with digital image correlation (DIC), we track crack propagation and identify failure processes at the scale of individual lattice cells. While the imperfections do not alter the location of crack initiation or the peak load, they consistently lead to an increase in work to failure when the crack path is tortuous or crack bridging occurs. These findings demonstrate how small, targeted modifications to an otherwise regular lattice can significantly influence fracture resistance in brittle architected materials.

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  1. How Geometry Tames Disorder in Lattice Fracture

    cond-mat.mtrl-sci 2026-02 conditional novelty 7.0 of 10

    The Slenderness Ratio of a triangular beam lattice controls how much Weibull-distributed strut strength disorder affects crack path and toughness, yielding three failure regimes.

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