Inverse Design of Discrete Interlocking Materials with Desired Mechanical Behavior
Pengbin Tang, Bernhard Thomaszewski, Stelian Coros, Bernd Bickel
摘要
We present a computational approach for designing Discrete Interlocking Materials (DIMs) with desired mechanical properties. Unlike conventional elastic materials, DIMs are kinematic materials governed by internal contacts among elements. These contacts induce anisotropic deformation limits that depend on the shape and topology of the elements. To enable gradient-based design optimization of DIMs with desired deformation limits, we introduce an implicit representation of interlocking elements based on unions of tori. Using this low-dimensional representation, we simulate DIMs with smoothly evolving contacts, allowing us to predict changes in deformation limits as a function of shape parameters. With this toolset in hand, we optimize for element shape parameters to design heterogeneous DIMs that best approximate prescribed limits. We demonstrate the effectiveness of our method by designing discrete interlocking materials with diverse limit profiles for in- and out-of-plane deformation and validate our method on fabricated physical prototypes.
问问这篇 Paper
问问你的智能体。
Lune 读过与它相关的顶会 Paper,每个回答都会注明依据哪几篇。
相关 Paper
- Beyond Chainmail: Computational Modeling of Discrete Interlocking MaterialsPengbin Tang, Stelian Coros, Bernhard ThomaszewskiSIGGRAPH 2023 · 被引用 14 次
- Umbrella meshes: elastic mechanisms for freeform shape deploymentYingying Ren, Uday Kusupati, Julian Panetta, Florin Isvoranu 等SIGGRAPH 2022 · 被引用 27 次
- IsoGami: Rigid-Deployable Kirigami Materials From Isohedral TilingsGuo Han, Juan Montes Maestre, Logan Numerow, Ronan Hinchet 等SIGGRAPH 2026
- Computational Exploration of Multistable Elastic KnotsMichele Vidulis, Yingying Ren, Julian Panetta, Eitan Grinspun 等SIGGRAPH 2023 · 被引用 8 次
- A low-parametric rhombic microstructure family for irregular latticesDavi C. Tozoni, Jérémie Dumas, Zhongshi Jiang, Julian Panetta 等SIGGRAPH 2020 · 被引用 42 次
