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相关论文: Rigid Foldability and Mountain-Valley Crease Assig…

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We prove that testing the flat foldability of an origami crease pattern (either labeled with mountain and valley folds, or unlabeled) is fixed-parameter tractable when parameterized by the ply of the flat-folded state and by the treewidth…

计算几何 · 计算机科学 2023-06-22 David Eppstein

Given a flat-foldable origami crease pattern $G=(V,E)$ (a straight-line drawing of a planar graph on a region of the plane) with a mountain-valley (MV) assignment $\mu:E\to\{-1,1\}$ indicating which creases in $E$ bend convexly (mountain)…

Origami as a deployable structure offers the unique advantage of achieving compact stowage via flat-folding while forming a well-defined surface composed of rigid panels upon deployment. However, since origami consists of flat facets, it is…

软凝聚态物质 · 物理学 2025-11-27 Byoung-Gyu Kim , Geon Hee Cho , Hak-Tae Lee , Jinkyu Yang

Traditionally, origami has been categorized into two groups according to their kinematics design: rigid and non-rigid origami. However, such categorization can be superficial, and rigid origami can obtain new mechanical properties by…

应用物理 · 物理学 2021-07-13 Jiayue Tao , Suyi Li

Given an origami crease pattern $C=(V,E)$, a straight-line planar graph embedded in a region of $\mathbb{R}^2$, we assign each crease to be either a mountain crease (which bends convexly) or a valley crease (which bends concavely), creating…

Flexible robotics are capable of achieving various functionalities by shape morphing, benefiting from their compliant bodies and reconfigurable structures. Here we construct and study a class of origami springs generalized from the known…

机器人学 · 计算机科学 2022-01-19 Qianying Chen , Fan Feng , Pengyu Lv , Huiling Duan

A foundational result in origami mathematics is Kawasaki and Justin's simple, efficient characterization of flat foldability for unassigned single-vertex crease patterns (where each crease can fold mountain or valley) on flat material. This…

计算几何 · 计算机科学 2022-04-11 Lily Chung , Erik D. Demaine , Dylan Hendrickson , Victor Luo

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…

软凝聚态物质 · 物理学 2020-12-24 James McInerney , Bryan Gin-ge Chen , Louis Theran , Christian Santangelo , Zeb Rocklin

We present an approach to overcoming challenges in dynamical dexterity for robots through tunable origami structures. Our work leverages a one-parameter family of flat sheet crease patterns that folds into origami bellows, whose axial…

机器人学 · 计算机科学 2019-10-31 Wei-Hsi Chen , Shivangi Misra , Yuchong Gao , Young-Joo Lee , Daniel E. Koditschek , Shu Yang , Cynthia R. Sung

Four rigid panels connected by hinges that meet at a point form a 4-vertex, the fundamental building block of origami metamaterials. Here we show how the geometry of 4-vertices, given by the sector angles of each plate, affects their…

软凝聚态物质 · 物理学 2016-03-23 Scott Waitukaitis , Martin van Hecke

The Miura vertex is a versatile origami pattern found in a variety of mechanisms. Previous papers have derived and validated a closed-form solution for the kinematics of a symmetric Miura vertex, but the motion of an asymmetric vertex has…

应用物理 · 物理学 2020-01-22 Soroush Kamrava , Chang Liu , Alec Q. Orlofsky , Ashkan Vaziri , Samuel M. Felton

Continuing results from JCDCGGG 2016 and 2017, we solve several new cases of the simple foldability problem -- deciding which crease patterns can be folded flat by a sequence of (some model of) simple folds. We give new efficient algorithms…

计算几何 · 计算机科学 2023-06-02 Hugo Akitaya , Josh Brunner , Erik D. Demaine , Dylan Hendrickson , Victor Luo , Andy Tockman

Origami structures have been proposed as a means of creating three-dimensional structures from the micro- to the macroscale, and as a means of fabricating mechanical metamaterials. The design of such structures requires a deep understanding…

软凝聚态物质 · 物理学 2020-04-29 M. Berry , M. E. Lee-Trimble , C. D. Santangelo

Origami morphing, obtained with patches of piecewise smooth isometries separated by straight fold lines, is an exquisite art that has already received considerable attention in the mathematics and mechanics literature. Curved fold lines,…

软凝聚态物质 · 物理学 2024-12-25 Antonio DeSimone , Luciano Teresi

Folding paper along curves leads to spatial structures that have curved surfaces meeting at spatial creases, defined as curve-fold origami. In this work, we provide an Eulerian framework focusing on the mechanics of arbitrary curve-fold…

软凝聚态物质 · 物理学 2024-08-16 Zhixuan Wen , Pengyu Lv , Fan Feng , Huiling Duan

Due to its rigid foldability and predictable kinematics, the reverse fold is the fundamental mechanism behind some of the most well known origami kinematic structures, including the Miura Ori, Yoshimura, and waterbomb patterns. However, the…

机器人学 · 计算机科学 2024-07-26 Malcolm Smith

In this study, we examine a rapid and reversible origami folding method by exploiting a combination of resonance excitation, asymmetric multi-stability, and active control. The underlying idea is that, by harmonically exciting a…

应用物理 · 物理学 2020-06-11 Sahand Sadeghi , Suyi Li

Miura-Ori, a celebrated origami pattern that facilitates functionality in matter, has found multiple applications in the field of mechanical metamaterials. Modifications of Miura-Ori pattern can produce curved configurations during folding,…

软凝聚态物质 · 物理学 2024-12-20 Alon Sardas , Michael Moshe , Cy Maor

Origami-based structures play an important role in the realization of deployable mechanisms and unique mechanical properties via programmable deformation by folding. Among origami-based structures, tessellation by the coupling of origami…

For origami structures, perforating or cutting slits along creases is an effective method to define fold lines and alleviate stress concentrations at vertices. In this letter we show numerically and experimentally that for…

应用物理 · 物理学 2022-09-16 Mengzhu Yang , Steven W. Grey , Fabrizio Scarpa , Mark Schenk