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Wrinkling in Sheets with Nonuniform Growth and Bending Rigidity

2025/11/14 by Igor Levin, Levin, I., Sarah L. Keller +1
Computer Science · Engineering · #Advanced Materials and Mechanics #Cellular Automata and Applications #FOS: Physical sciences #Soft Condensed Matter (cond-mat.soft) #Structural Analysis and Optimization

paper · pdf · doi:10.48550/arxiv.2511.11950

openalex publication_date 2025/11/14 · openalex created_date 2025/11/19 · openalex updated_date 2026/07/28

Abstract

Thin elastic sheets bend easily, leading to mechanical instabilities such as wrinkling. Here, we investigate wrinkles at edges of bi-strips, which consist of two thin sheets, one that swells and one that does not, joined side-by-side. It is well known that when bending rigidity is uniform across an isolated bi-strip, swelling results in axisymmetric shapes like a wine bottle: two cylinders of different radii are joined by a smooth transition zone. However, when the bending rigidity of the swollen sheet differs from that of the non-swollen sheet, purely axisymmetric shapes are no longer energetically favorable, and wrinkles arise. When the bending rigidity of the non-swollen sheet is essentially infinite, the wrinkles coarsen with distance from the transition zone such that dimensionless wavelengths and widths are related by λ ∝ w2/3. If the bending rigidity of the non-swollen sheet is non-infinite (but~still significantly larger than that of the swollen sheet), then the non-swollen sheet assumes a non-infinite radius of curvature, R0. We find that the wrinkles in this system extend a critical distance, wC, beyond the junction of the two strips and that wC ∝ R0. Local undulations of wrinkles are favorable in this system because they decrease the overall bending energy by allowing the non-swollen sheet to have a larger radius of curvature than would otherwise be dictated by its reference geometry. Our results are relevant to a wide range of sheets that experience non-uniform growth, whether in natural systems such as plants or in synthetic systems such as designed, responsive materials.

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