Differentiable Stripe Patterns for Inverse Design of Structured Surfaces
Juan Montes Maestre, Yinwei Du, Ronan Hinchet, Stelian Coros, Bernhard Thomaszewski
Abstract
Stripe patterns are ubiquitous in nature and everyday life. While the synthesis of these patterns has been thoroughly studied in the literature, their potential to control the mechanics of structured materials remains largely unexplored. In this work, we introduce Differentiable Stripe Patterns---a computational approach for automated design of physical surfaces structured with stripe-shaped bi-material distributions. Our method builds on the work by Knöppel and colleagues [2015] for generating globally-continuous and equally-spaced stripe patterns. To unlock the full potential of this design space, we propose a gradient-based optimization tool to automatically compute stripe patterns that best approximate macromechanical performance goals. Specifically, we propose a computational model that combines solid shell finite elements with XFEM for accurate and fully-differentiable modeling of elastic bi-material surfaces. To resolve non-uniqueness problems in the original method, we furthermore propose a robust formulation that yields unique and differentiable stripe patterns. We combine these components with equilibrium state derivatives into an end-to-end differentiable pipeline that enables inverse design of mechanical stripe patterns. We demonstrate our method on a diverse set of examples that illustrate the potential of stripe patterns as a design space for structured materials. Our simulation results are experimentally validated on physical prototypes.
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 c268f9c0-be30-4a88-9307-5cd8207c5370Cited by top-tier papers7
- Neural Slicer for Multi-Axis 3D PrintingTao Liu, Tianyu Zhang, Yongxue Chen, Yuming Huang et al.SIGGRAPH 2024 · 35 citations
- Neural Co-Optimization of Structural Topology, Manufacturable Layers, and Path Orientations for Fiber-Reinforced CompositesTao Liu, Tianyu Zhang, Yongxue Chen, Weiming Wang et al.SIGGRAPH 2025 · 15 citations
- FlexScale: Modeling and Characterization of Flexible Scaled SheetsJuan Montes Maestre, Yinwei Du, Ronan Hinchet, Stelian Coros et al.SIGGRAPH 2024 · 6 citations
- Asymptotic analysis and design of linear elastic shell lattice metamaterialsDi Zhang, Ligang LiuSIGGRAPH 2025 · 1 citation
- Discrete Torsion of Connection Forms on Simplicial MeshesTheo Braune, Mark Gillespie, Yiying Tong, Mathieu DesbrunSIGGRAPH 2025 · 1 citation
Builds on6
- Incremental potential contact: intersection-and inversion-free, large-deformation dynamicsMinchen Li, Zachary Ferguson, Teseo Schneider, Timothy R. Langlois et al.SIGGRAPH 2020 · 320 citations
- 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
- Computational design of skintight clothingJuan Montes, Bernhard Thomaszewski, Sudhir P. Mudur, Tiberiu PopaSIGGRAPH 2020 · 52 citations
- A low-parametric rhombic microstructure family for irregular latticesDavi C. Tozoni, Jérémie Dumas, Zhongshi Jiang, Julian Panetta et al.SIGGRAPH 2020 · 42 citations
Related papers
- Simulation and optimization of magnetoelastic thin shellsXuwen Chen, Xingyu Ni, Bo Zhu, Bin Wang et al.SIGGRAPH 2022 · 12 citations
- Umbrella meshes: elastic mechanisms for freeform shape deploymentYingying Ren, Uday Kusupati, Julian Panetta, Florin Isvoranu et al.SIGGRAPH 2022 · 27 citations
- Stress-Aware Panelization of Freeform SurfacesXinzhuo Hu, Roi Poranne, Julian PanettaSIGGRAPH 2026
- Fine-grained Differentiable Physics: A Yarn-level Model for FabricsDeshan Gong, Zhanxing Zhu, Andrew J. Bulpitt, He WangICLR 2022 · 11 citations
- Elastic Locomotion with Mixed Second-order DifferentiationSiyuan Shen, Tianjia Shao, Kun Zhou, Chenfanfu Jiang et al.SIGGRAPH 2025 · 2 citations
