Snap‐through instability in mechanical metamaterials

S Yan, L Wu, Y Wen, J Sun, J Zhou - Responsive Materials, 2025 - Wiley Online Library
Snap‐through instability, a rapid transition between equilibrium states, has emerged as a
crucial mechanism for designing mechanical metamaterials with novel functionalities …

Multi‐Physical Lattice Metamaterials Enabled by Additive Manufacturing: Design Principles, Interaction Mechanisms, and Multifunctional Applications

WWS Ma, H Yang, Y Zhao, X Li, J Ding, S Qu… - Advanced …, 2025 - Wiley Online Library
Lattice metamaterials emerge as advanced architected materials with superior physical
properties and significant potential for lightweight applications. Recent developments in …

Energy Dissipative and Strength-Flexible Trade-Off Structures Enabled by Topological Interlocking Mechanisms

Y **g, Z Chen, H Wang, X Zhang, S Long… - Available at SSRN … - papers.ssrn.com
This study presents a chainmail-inspired fabric that combines flexibility, strength, and
repeatable energy dissipation. By constructing a topologically interlocked metamaterial …