Issue 16, 2024

Faceted wrinkling by contracting a curved boundary

Abstract

Single-mode deformations of two-dimensional materials, such as the Miura-ori zig-zag fold, are important to the design of deployable structures because of their robustness; these usually require careful pre-patterning of the material. Here we show that inward contraction of a curved boundary produces a fine wrinkle pattern with a novel structure that suggests similar single-mode characteristics, but with minimal pre-patterning. Using finite-element representation of the contraction of a thin circular annular sheet, we show that these sheets wrinkle into a structure well approximated by an isometric structure composed of conical sectors and flat, triangular facets. Isometry favours the restriction of such deformations to a robust low-bending energy channel that avoids stretching. This class of buckling offers a novel way to manipulate sheet morphology via boundary forces.

Graphical abstract: Faceted wrinkling by contracting a curved boundary

Supplementary files

Article information

Article type
Paper
Submitted
08 Oct 2023
Accepted
14 Mar 2024
First published
05 Apr 2024
This article is Open Access
Creative Commons BY license

Soft Matter, 2024,20, 3473-3482

Faceted wrinkling by contracting a curved boundary

A. S. Pal, L. Pocivavsek and T. A. Witten, Soft Matter, 2024, 20, 3473 DOI: 10.1039/D3SM01347B

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