Computational Design of Laser-Cut Bending-Active Structures - Authoring and directing story worlds
Article Dans Une Revue Computer-Aided Design Année : 2022

Computational Design of Laser-Cut Bending-Active Structures

Résumé

We propose a method to automatically design bending-active structures, made of wood, whose silhouettes at equilibrium match desired target curves. Our approach is based on the use of a parametric pattern that is regularly laser-cut on the structure and that allows us to locally modulate the bending stiffness of the material. To make the problem tractable, we rely on a two-scale approach where we first compute the mapping between the average mechanical properties of periodically laser-cut samples of mdf wood, treated here as metamaterials, and the stiffness parameters of a reduced 2D model; then, given an input target shape, we automatically select the parameters of this reduced model that give us the desired silhouette profile. We validate our method both numerically and experimentally by fabricating a number of full scale structures of varied target shapes.
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Dates et versions

hal-03687416 , version 1 (03-06-2022)

Identifiants

Citer

Emmanuel Rodriguez, Georges-Pierre Bonneau, Stefanie Hahmann, Mélina Skouras. Computational Design of Laser-Cut Bending-Active Structures. Computer-Aided Design, 2022, (SPM 2022), 151 (103335), pp.1-12. ⟨10.1016/j.cad.2022.103335⟩. ⟨hal-03687416⟩
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