We consider the zero-energy deformations of periodic origami sheets with generic crease patterns. Using a mapping from the linear folding motions of such sheets to force-bearing modes in conjunction with the Maxwell–Calladine index theorem we derive a relation between the number of linear folding motions and the number of rigid body modes that depends only on the average coordination number of the origami’s vertices. This supports the recent result by Tachi [T. Tachi, Origami 6, 97–108 (2015)] which shows periodic origami sheets with triangular faces exhibit two-dimensional spaces of rigidly foldable cylindrical configurations. We also find, through analytical calculation and numerical simulation, branching of this configuration space from ...
The integration of soft actuating materials within origami-based mechanisms is a novel method to amp...
We describe mechanical metamaterials created by folding flat sheets in the tradition of origami, the...
Origami has recently emerged as a promising building block of mechanical metamaterials because it of...
Funding: NSF Award No. PHY-1554887 (B.G.C.). NSF DMR-1822638 (C.S.). Georgia Institute of Technology...
The physics of origami concerns the relationship between the introduction of creases to a thin sheet...
Programmable stiff sheets with a single low-energy folding motion have been sought in fields ranging...
Origami (paper folding) is an effective tool for transforming two-dimensional materials into threedi...
Rigid foldability allows an origami pattern to fold about crease lines without twisting or stretchin...
Presented at the Symposium on Soft Matter Forefronts "Contributed Talks", April 19, 2018, from 2:00 ...
Origami structures are characterized by a network of folds and vertices joining unbendable plates. F...
Origami (paper folding) is an effective tool for transforming two-dimensional materials into threedi...
In the first part of this thesis we study the geometry of folding patterns. Specifically...
Recent advances in robotics engineering have enabled the realization of self-folding machines. Rigid...
Origami, the ancient art of paper folding, embodies techniques for transforming a flat sheet of pape...
Creased sheets can possess an exponential number of folding pathways accessible from the flat state....
The integration of soft actuating materials within origami-based mechanisms is a novel method to amp...
We describe mechanical metamaterials created by folding flat sheets in the tradition of origami, the...
Origami has recently emerged as a promising building block of mechanical metamaterials because it of...
Funding: NSF Award No. PHY-1554887 (B.G.C.). NSF DMR-1822638 (C.S.). Georgia Institute of Technology...
The physics of origami concerns the relationship between the introduction of creases to a thin sheet...
Programmable stiff sheets with a single low-energy folding motion have been sought in fields ranging...
Origami (paper folding) is an effective tool for transforming two-dimensional materials into threedi...
Rigid foldability allows an origami pattern to fold about crease lines without twisting or stretchin...
Presented at the Symposium on Soft Matter Forefronts "Contributed Talks", April 19, 2018, from 2:00 ...
Origami structures are characterized by a network of folds and vertices joining unbendable plates. F...
Origami (paper folding) is an effective tool for transforming two-dimensional materials into threedi...
In the first part of this thesis we study the geometry of folding patterns. Specifically...
Recent advances in robotics engineering have enabled the realization of self-folding machines. Rigid...
Origami, the ancient art of paper folding, embodies techniques for transforming a flat sheet of pape...
Creased sheets can possess an exponential number of folding pathways accessible from the flat state....
The integration of soft actuating materials within origami-based mechanisms is a novel method to amp...
We describe mechanical metamaterials created by folding flat sheets in the tradition of origami, the...
Origami has recently emerged as a promising building block of mechanical metamaterials because it of...