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A novel layered topology of auxetic materials based on the tetrachiral honeycomb microstructure

Articolo
Data di Pubblicazione:
2019
Abstract:
Microstructured honeycomb materials may exhibit exotic, extreme and tailorable mechanical properties, suited for innovative technological applications in a variety of modern engineering fields. The paper is focused on analysing the directional auxeticity of tetrachiral materials, through analytical, numerical and experimental methods. Theoretical predictions about the global elastic properties have been successfully validated by performing tensile laboratory tests on tetrachiral samples, realized with high precision 3D printing technologies. Inspired by the kinematic behaviour of the tetrachiral material, a newly-design bi-layered topology, referred to as bi-tetrachiral material, has been theoretically conceived and mechanically modelled. The novel topology virtuously exploits the mutual collaboration between two tetrachiral layers with opposite chiralities. The bi-tetrachiral material has been verified to outperform the tetrachiral material in terms of global Young modulus and, as major achievement, to exhibit a remarkable auxetic behaviour. Specifically, experimental results, confirmed by parametric analytical and computational analyses, have highlighted the effective possibility to attain strongly negative Poisson ratios, identified as a peculiar global elastic property of the novel bi-layered topology.
Tipologia CRIS:
1.1 Articolo in rivista
Keywords:
Additive manufacturing, Beam lattice, Bi-tetrachiral material, Elastic properties, Experimental tests, Finite element analysis
Elenco autori:
Auricchio, F.; Bacigalupo, A.; Gambarotta, L.; Lepidi, M.; Morganti, S.; Vadala, F.
Autori di Ateneo:
AURICCHIO FERDINANDO
MORGANTI SIMONE
Link alla scheda completa:
https://iris.unipv.it/handle/11571/1339189
Pubblicato in:
MATERIALS & DESIGN
Journal
  • Dati Generali

Dati Generali

URL

https://www.sciencedirect.com/science/article/pii/S0264127519303211?via=ihub; https://doi.org/10.1016/j.matdes.2019.107883
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