Parametric analysis of bandgaps in a general metachiral lattice using discrete dynamical analysis

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dc.contributor.author Paul, Diptangshu
dc.contributor.author Jayaprakash, K. R.
dc.coverage.spatial United States of America
dc.date.accessioned 2024-03-20T14:30:47Z
dc.date.available 2024-03-20T14:30:47Z
dc.date.issued 2024-07
dc.identifier.citation Paul, Diptangshu and Jayaprakash, K. R., "Parametric analysis of bandgaps in a general metachiral lattice using discrete dynamical analysis", Wave Motion, DOI: 10.1016/j.wavemoti.2024.103289, vol. 128, Jul. 2024.
dc.identifier.issn 0165-2125
dc.identifier.issn 1878-433X
dc.identifier.uri https://doi.org/10.1016/j.wavemoti.2024.103289
dc.identifier.uri https://repository.iitgn.ac.in/handle/123456789/9874
dc.description.abstract To exploit low-frequency bandgaps in a chiral auxetic lattice, local resonators (LR) are usually incorporated. In that case, the tailorable bandgaps are the sub-Bragg bandgaps, whose width depend on the mass of the resonator and the effective stiffness of the elastic coupling used to attach the resonator. However, this does not allow direct control over the bandgaps above the sub-Bragg frequencies. To achieve that, in this study, we introduce the diatomic structure and include a secondary species in the lattice, resulting in highly tailorable bandgaps in the absence of the LRs. The proposed class of metachiral lattices introduces seven design parameters that can be varied to engineer the band structure over a wide frequency range. A detailed analytical study of the lattice has been conducted using a discrete Lagrangian model, and the dispersion characteristics have been studied by invoking Floquet-Bloch periodicity conditions. Appropriate finite element analysis has been conducted to compare the analytical results and corroborate the detailed parametric study thereof.
dc.description.statementofresponsibility by Diptangshu Paul and K. R. Jayaprakash
dc.format.extent vol. 128
dc.language.iso en_US
dc.publisher Elsevier
dc.subject Chiral auxetic lattice
dc.subject Discrete dynamical analysis
dc.subject Frequency band gaps
dc.subject Floquet�bloch spectrum
dc.subject Parametric study
dc.subject Dispersive waves
dc.title Parametric analysis of bandgaps in a general metachiral lattice using discrete dynamical analysis
dc.type Article
dc.relation.journal Wave Motion


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