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A beam model for duoskelion structures derived by asymptotic homogenization and its application to axial loading problems

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Fecha
2023
Autor(es)
Barchiesi, Emilio
dell'Isola, Francesco
Seppecher, Pierre
Turco, Emilio
Metadatos
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Resumen
Duoskelion structures have been recently introduced by Barchiesi et al. (2021) as a proof-of-concept motif for a new class of metamaterials. The properties of these periodic beam-like chiral structural elements have been investigated, up to now, by means of a discrete model formulation whose predictions are obtained by numerical methods. In this paper we select a specific scaling law for micro stiffnesses aimed at deriving, via asymptotic homogenization, an internally-constrained Cosserat one-dimensional planar continuum model as the limit of a duoskelion structure. We analyze qualitatively and quantitatively the family of equilibrium configurations of the homogenized continuum when subjected to axial loading and compare the results of the analysis with those obtained by means of the discrete model formulation.
URI
https://hdl.handle.net/20.500.12724/17927
DOI
https://doi.org/10.1016/j.euromechsol.2022.104848
Cómo citar
Barchiesi, E., dell'Isola, F., Seppecher, P. & Turco, E. (2023). A beam model for duoskelion structures derived by asymptotic homogenization and its application to axial loading problems. European Journal of Mechanics, A/Solids, 98. https://doi.org/10.1016/j.euromechsol.2022.104848
Editor
Elsevier Ltd.
Temas
Homogeneización
Mecánica de medios continuos
Cargas axiales
Funciones lagrangianas
Revista
European Journal of Mechanics, A/Solids
ISSN
0997-7538
Coleccion(es)
  • Investigadores externos [115]


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