Umbrella meshes: elastic mechanisms for freeform shape deployment
Yingying Ren, Uday Kusupati, Julian Panetta, Florin Isvoranu, Davide Pellis, Tian Chen, Mark Pauly
Abstract
We present a computational inverse design framework for a new class of volumetric deployable structures that have compact rest states and deploy into bending-active 3D target surfaces. Umbrella meshes consist of elastic beams, rigid plates, and hinge joints that can be directly printed or assembled in a zero-energy fabrication state. During deployment, as the elastic beams of varying heights rotate from vertical to horizontal configurations, the entire structure transforms from a compact block into a target curved surface. Umbrella Meshes encode both intrinsic and extrinsic curvature of the target surface and in principle are free from the area expansion ratio bounds of past auxetic material systems. We build a reduced physics-based simulation framework to accurately and efficiently model the complex interaction between the elastically deforming components. To determine the mesh topology and optimal shape parameters for approximating a given target surface, we propose an inverse design optimization algorithm initialized with conformal flattening. Our algorithm minimizes the structure's strain energy in its deployed state and optimizes actuation forces so that the final deployed structure is in stable equilibrium close to the desired surface with few or no external constraints. We validate our approach by fabricating a series of physical models at various scales using different manufacturing techniques.
Ask about this paper
Your agent reads all of it.
Lune indexed this paper to the last equation, along with the top-tier papers that cite it. Ask a question and the answer quotes them.
Your agent calls
Luneget_paper_fulltext
Free to start. No credit card required.
Terminal
Install the CLIlune papers fulltext bf458042-ca63-4673-8f73-7dda3c79b08aCited by top-tier papers2
- Deployable strip structuresDaoming Liu, Davide Pellis, Yu-Chou Chiang, Florian Rist et al.SIGGRAPH 2023 · 18 citations
- Fabric Tessellation: Realizing Freeform Surfaces by SmockingAviv Segall, Jing Ren, Amir Vaxman, Olga Sorkine-HornungSIGGRAPH 2024 · 9 citations
Builds on3
- Bistable auxetic surface structuresTian Chen, Julian Panetta, Max Schnaubelt, Mark PaulySIGGRAPH 2021 · 99 citations
- Computational inverse design of surface-based inflatablesJulian Panetta, Florin Isvoranu, Tian Chen, Emmanuel Siéfert et al.SIGGRAPH 2021 · 93 citations
- On elastic geodesic grids and their planar to spatial deploymentStefan Pillwein, Kurt Leimer, Michael Birsak, Przemyslaw MusialskiSIGGRAPH 2020 · 48 citations
Related papers
- Computational Homogenization for Inverse Design of Surface-based InflatablesYingying Ren, Julian Panetta, Seiichi Suzuki, Uday Kusupati et al.SIGGRAPH 2024 · 23 citations
- 3D weaving with curved ribbonsYingying Ren, Julian Panetta, Tian Chen, Florin Isvoranu et al.SIGGRAPH 2021 · 43 citations
- Differentiable Stripe Patterns for Inverse Design of Structured SurfacesJuan Montes Maestre, Yinwei Du, Ronan Hinchet, Stelian Coros et al.SIGGRAPH 2023 · 14 citations
- Inverse Design of Discrete Interlocking Materials with Desired Mechanical BehaviorPengbin Tang, Bernhard Thomaszewski, Stelian Coros, Bernd BickelSIGGRAPH 2025 · 1 citation
- Computational Exploration of Multistable Elastic KnotsMichele Vidulis, Yingying Ren, Julian Panetta, Eitan Grinspun et al.SIGGRAPH 2023 · 8 citations
