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research article

Tencers: Tension-Constrained Elastic Rods

Dandy, Liliane-Joy Yana  
•
Vidulis, Michele  
•
Ren, Yingying  
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December 2024
ACM Transactions on Graphics

We study ensembles of elastic rods that are tensioned by a small set of inextensible cables. The cables induce forces that deform the initially straight, but flexible rods into 3D space curves at equilibrium. Rods can be open or closed, knotted, and arranged in arbitrary topologies. We specifically focus on equilibrium states with no contacts among rods. Our setup can thus be seen as a generalization of classical tensegrities that are composed of rigid rods and tensile cables, to also support rods that elastically deform. We show how this generalization leads to a rich design space, where complex target shapes can be achieved with a small set of elastic rods. To explore this space, we present an inverse design optimization algorithm that solves for the length and placement of cables such that the equilibrium state of the rod network best approximates a given set of input curves. We introduce appropriate sparsity terms to minimize the number of required cables, which significantly simplifies fabrication. Using our algorithm, we explore new classes of bending-active 3D structures, including elastic tensegrity knots that only require a few internal cables. We design and fabricate several physical models from basic materials that attain complex 3D shapes with unique structural properties.

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Type
research article
DOI
10.1145/3687967
Author(s)
Dandy, Liliane-Joy Yana  

EPFL

Vidulis, Michele  

EPFL

Ren, Yingying  

EPFL

Pauly, Mark  

EPFL

Date Issued

2024-12

Published in
ACM Transactions on Graphics
Volume

43

Issue

6

Article Number

214

Start page

1

End page

13

Subjects

computational design

•

physics-based simulation

•

elastic structures

•

fabrication

URL

Project page

https://go.epfl.ch/tencers
Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
GCM  
FunderFunding(s)Grant NumberGrant URL

Swiss National Science Foundation

188582

Available on Infoscience
September 18, 2024
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/241284
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