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Shape-morphing mechanical metamaterials

delete2022-02-01
delete18
PRE
AI
C
Caigui Jiang
F
Florian Rist
王辉 cover
王辉 (Hui Wang)
J
Johannes Wallner *
H
Helmut Pottmann
DOI:10.1016/j.cad.2021.103146delete
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Abstract

Abstract

En 中文
Small-scale cut and fold patterns imposed on sheet material enable its morphing into threedimensional shapes. This manufacturing paradigm has been receiving much attention in recent years and poses challenges in both fabrication and computation. It is intimately connected with the interpretation of patterned sheets as mechanical metamaterials, typically of negative Poisson ratio. We here present an affirmative solution to a fundamental geometric question, namely the targeted programming of a shape morph. We use optimization to compute kirigami patterns that realize a morph between shapes, in particular between a flat sheet and a surface in space. The shapes involved can be arbitrary; in fact we are able to approximate any mapping between shapes whose principal distortions do not exceed certain bounds. This amounts to a solution of the so-called inverse problem for kirigami cut and fold patterns. The methods we employ include a differential-geometric interpretation of the morph, besides drawing on recent progress in geometric computing (c) 2021 Elsevier Ltd. All rights reserved.
Keywords:
Kirigami
Auxetic materials
Metamaterials
Shape morphing
Computational fabrication

Journal

C
Computer-Aided Design
IF:
3.1
Papers:
3.1K
Citations:
6.4K

Organization

K
king abdullah university of science & technology
Scholars:
1.3W
Papers: 1.3W
Citations: 32
G
Graz University of Technology
Scholars:
6.7K
Papers: 6.3K
Citations: 8.5K