Bistable metamaterials offer a promising solution for vibration mitigation in structural systems. This research presents the conceptualization of the experiments for a bistable meta-panel, which uses geometric nonlinearity and snap-through instability to enhance energy absorption and dissipation. A scaled prototype, produced via additive manufacturing, undergoes static and dynamic testing to assess its response. This work provides a foundation for further development of meta-material-based seismic protection systems.
Experimental Design of Bistable Meta-panel for Dynamic Investigation / Cavanni, V.; Miraglia, G.; Scussolini, L.; Marchi, A. De; Caneparo, L.; Ceravolo, R.. - ELETTRONICO. - (2025). (Intervento presentato al convegno 2025 Nineteenth International Congress on Artificial Materials for Novel Wave Phenomena (Metamaterials) tenutosi a Amsterdam (NL) nel 01-06 September 2025) [10.1109/metamaterials65622.2025.11174259].
Experimental Design of Bistable Meta-panel for Dynamic Investigation
Cavanni, V.;Miraglia, G.;Scussolini, L.;Caneparo, L.;Ceravolo, R.
2025
Abstract
Bistable metamaterials offer a promising solution for vibration mitigation in structural systems. This research presents the conceptualization of the experiments for a bistable meta-panel, which uses geometric nonlinearity and snap-through instability to enhance energy absorption and dissipation. A scaled prototype, produced via additive manufacturing, undergoes static and dynamic testing to assess its response. This work provides a foundation for further development of meta-material-based seismic protection systems.| File | Dimensione | Formato | |
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Experimental_Design_of_Bistable_Meta-panel_for_Dynamic_Investigation.pdf
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Experimental_Design_of_Bistable_Metapanel_for_Dynamic_Investigation.pdf
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https://hdl.handle.net/11583/3004110
