Please use this identifier to cite or link to this item: http://hdl.handle.net/10397/114005
Title: Topological interface and corner states of flexural waves in metamaterial plates with glide-symmetric holes
Authors: Fan, L 
Chen, Y 
Zhu, J
Su, Z 
Issue Date: 20-Jan-2025
Source: Journal of sound and vibration, 20 Jan. 2025, v. 595, 118795
Abstract: This study investigates the topological localization and propagation of flexural waves in metamaterial plates with perforated holes exhibiting glide symmetry. The dispersion relations of flexural waves in this mechanical system exhibit four-fold Dirac degeneracies at the M point of the Brillouin zone. By properly adjusting the rotation angles of the perforated holes, these degeneracies can be lifted up to create omnidirectional bandgaps, enabling nontrivial topological phases. Both numerical and experimental results demonstrate multiple topological states of flexural waves in the developed elastic metaplates, including dual-band helical interface states and anisotropic interface/corner states. The simple perforated metaplates with glide-symmetric holes provide novel, manufacturable platforms for the flexible manipulation of topological flexural waves, greatly facilitating potential applications such as energy harvesting and signal enhancement.
Keywords: Elastic metamaterials
Glide symmetry
Phononic crystals
Topological insulator
Publisher: Academic Press
Journal: Journal of sound and vibration 
ISSN: 0022-460X
EISSN: 1095-8568
DOI: 10.1016/j.jsv.2024.118795
Appears in Collections:Journal/Magazine Article

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