Physical Review Letters · 2017 · 27 citations · 31 references
EngineeringGeometryMechanical EngineeringOrigami MetamaterialsGeometry GenerationFoldable StructureComputer-aided DesignSoft MatterThin Elastic SheetsSoft RoboticsElasticity (Physics)MechanicsRheologyDeformation ModelingComputational GeometryMaterial NonlinearitiesBiophysicsGeometric ModelingMaterials ScienceNonlinear ElasticitySolid MechanicsObserved Buckling Transitions3D PrintingFloating Annular SheetGross ShapeNatural SciencesMechanics Of Materials
Predicting the large-amplitude deformations of thin elastic sheets is difficult due to the complications of self contact, geometric nonlinearities, and a multitude of low-lying energy states. We study a simple two-dimensional setting where an annular polymer sheet floating on an air-water interface is subjected to different tensions on the inner and outer rims. The sheet folds and wrinkles into many distinct morphologies that break axisymmetry. These states can be understood within a recent geometric approach for determining the gross shape of extremely bendable yet inextensible sheets by extremizing an appropriate area functional. Our analysis explains the remarkable feature that the observed buckling transitions between wrinkled and folded shapes are insensitive to the bending rigidity of the sheet.
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Stress and Fold Localization in Thin Elastic Membranes
Luka Pocivavsek, Robert Dellsy, Andrew S. Kern‐Goldberger et al. · Science · 2008 · 535 citations · Full text
Capillary Wrinkling of Floating Thin Polymer Films
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Capillary Wrinkling, Engineering, Biomedical Engineering +17
Capillary Origami: Spontaneous Wrapping of a Droplet with an Elastic Sheet
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