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Identification of a geometrically nonlinear micromorphic continuum via granular micromechanics

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Date
2022
Author(s)
Turco, Emilio
Barchiesi, Emilio
Ciallella, Alessandro
dell’Isola, Francesco
Metadata
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Abstract
We present and discuss the results of some numerical simulations dealing with wave motion in one-dimensional pantographic media, also known as pantographic beams. Specifically, the analysis is carried out in large displacements regime and pantographic beams are modeled by using a completely discrete approach. Nonlinear vibrations induced by a transversal impulse are studied. A simple yet efficient time-stepping scheme was used to reconstruct the motion and, consequently, to explore the propagation of strain waves in the pantographic medium. The numerical study concludes that the main features of the observed strain wave propagation are extremely useful toward the understanding of the dynamic behavior of the pantographic micro-structure and its continuum counterparts.
URI
https://hdl.handle.net/20.500.12724/17832
DOI
https://doi.org/10.1016/j.wavemoti.2022.103064
How to cite
Turco, E., Barchiesi, E., Ciallella, A. & dell’Isola, F. (2022). Nonlinear waves in pantographic beams induced by transverse impulses. Wave Motion, 115. https://doi.org/10.1016/j.wavemoti.2022.103064
Publisher
Elsevier
Subject
Pendiente
Journal
Wave Motion
ISSN
0165-2125
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  • Investigadores externos [115]


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