Localization of deformation in the central hub of hub-and-spoke kirigami

Fuente: arXiv
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Autores principales: Barckicke, Jason, Domino, Lucie, Zhang, Qun, Liu, Mingchao, Vella, Dominic
Formato: Preprint
Publicado: 2025
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author Barckicke, Jason
Domino, Lucie
Zhang, Qun
Liu, Mingchao
Vella, Dominic
author_facet Barckicke, Jason
Domino, Lucie
Zhang, Qun
Liu, Mingchao
Vella, Dominic
contents A recent approach to the design of flexible electronic devices consists of cutting a two-dimensional sheet to form a central hub connected to several tapered `spokes', resembling the hub-and-spoke of a bicycle wheel. When radially compressed, the resulting cut sheet buckles out-of-plane forming a structure whose three-dimensional shape can be chosen by designing the tapering of the spokes. While the deformation of the spokes in this `hub-and-spoke' kirigami are approximately cylindrical (i.e.~zero Gaussian curvature and hence small elastic strain), this is not the case in the central hub. The central hub is deformed radially because of continuity with the spokes but, because of its own circular symmetry, it must develop Gaussian curvature, and hence strain. In this article we quantify this strain, focussing in particular on its magnitude and its location. We find that the strain is localized in a boundary layer near the edge of the hub region, whose size is controlled by the moment applied on it by the deformed spokes. We discuss the implications of our results for avoiding material failure in flexible-electronic devices.
format Preprint
id arxiv_https___arxiv_org_abs_2504_06626
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Localization of deformation in the central hub of hub-and-spoke kirigami
Barckicke, Jason
Domino, Lucie
Zhang, Qun
Liu, Mingchao
Vella, Dominic
Soft Condensed Matter
Materials Science
A recent approach to the design of flexible electronic devices consists of cutting a two-dimensional sheet to form a central hub connected to several tapered `spokes', resembling the hub-and-spoke of a bicycle wheel. When radially compressed, the resulting cut sheet buckles out-of-plane forming a structure whose three-dimensional shape can be chosen by designing the tapering of the spokes. While the deformation of the spokes in this `hub-and-spoke' kirigami are approximately cylindrical (i.e.~zero Gaussian curvature and hence small elastic strain), this is not the case in the central hub. The central hub is deformed radially because of continuity with the spokes but, because of its own circular symmetry, it must develop Gaussian curvature, and hence strain. In this article we quantify this strain, focussing in particular on its magnitude and its location. We find that the strain is localized in a boundary layer near the edge of the hub region, whose size is controlled by the moment applied on it by the deformed spokes. We discuss the implications of our results for avoiding material failure in flexible-electronic devices.
title Localization of deformation in the central hub of hub-and-spoke kirigami
topic Soft Condensed Matter
Materials Science
url https://arxiv.org/abs/2504.06626