Title
Beyond developable: computational design and fabrication with auxetic materials.
Abstract
We present a computational method for interactive 3D design and rationalization of surfaces via auxetic materials, i.e., flat flexible material that can stretch uniformly up to a certain extent. A key motivation for studying such material is that one can approximate doubly-curved surfaces (such as the sphere) using only flat pieces, making it attractive for fabrication. We physically realize surfaces by introducing cuts into approximately inextensible material such as sheet metal, plastic, or leather. The cutting pattern is modeled as a regular triangular linkage that yields hexagonal openings of spatially-varying radius when stretched. In the same way that isometry is fundamental to modeling developable surfaces, we leverage conformal geometry to understand auxetic design. In particular, we compute a global conformal map with bounded scale factor to initialize an otherwise intractable non-linear optimization. We demonstrate that this global approach can handle non-trivial topology and non-local dependencies inherent in auxetic material. Design studies and physical prototypes are used to illustrate a wide range of possible applications.
Year
DOI
Venue
2016
10.1145/2897824.2925944
ACM Trans. Graph.
Keywords
Field
DocType
digital fabrication,computational design,global optimization,differential geometry,conformal mapping
Scale factor,Mathematical optimization,Global optimization,Developable surface,Computer science,Conformal geometry,Conformal map,Differential geometry,Auxetics,Sheet metal
Journal
Volume
Issue
ISSN
35
4
0730-0301
Citations 
PageRank 
References 
14
0.70
36
Authors
6
Name
Order
Citations
PageRank
Mina Konakovic1140.70
Keenan Crane258629.28
Bailin Deng319815.30
Sofien Bouaziz493435.79
Daniel Piker5140.70
Mark Pauly64970201.49