Piezoelectric lattice metamaterials are considered. A computationally-effective homogenisation method is developed based on the recent solution to the Saint-Venant problem for general anisotropic piezoelectric cylinders. A publicly available repository of unit cell topologies is used to identify piezoelectric metamaterials with optimal figures of merit. © 2022, Scipedia S.L. All rights reserved.

Bisegna, P., Intrigila, C., Nodargi, N.a. (2022). Design of piezoelectric lattice metamaterials. In World Congress in Computational Mechanics and ECCOMAS Congress (pp.1-11). Scipedia S.L. [10.23967/eccomas.2022.082].

Design of piezoelectric lattice metamaterials

Bisegna P.
;
Nodargi N. A.
2022-01-01

Abstract

Piezoelectric lattice metamaterials are considered. A computationally-effective homogenisation method is developed based on the recent solution to the Saint-Venant problem for general anisotropic piezoelectric cylinders. A publicly available repository of unit cell topologies is used to identify piezoelectric metamaterials with optimal figures of merit. © 2022, Scipedia S.L. All rights reserved.
8th European Congress on Computational Methods in Applied Sciences and Engineering, ECCOMAS Congress 2022
Oslo
2022
World Congress in Computational Mechanics and ECCOMAS Congress
Rilevanza internazionale
su invito
5-giu-2022
2022
Settore ICAR/08 - SCIENZA DELLE COSTRUZIONI
English
3D-printing; Crystal networks; Homogenisation; Lattice materials; Metamaterials; Piezoelectric materials
Intervento a convegno
Bisegna, P., Intrigila, C., Nodargi, N.a. (2022). Design of piezoelectric lattice metamaterials. In World Congress in Computational Mechanics and ECCOMAS Congress (pp.1-11). Scipedia S.L. [10.23967/eccomas.2022.082].
Bisegna, P; Intrigila, C; Nodargi, Na
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/320927
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