Rhapso: Automatically Embedding Fiber Materials into 3D Prints for Enhanced Interactivity
Daniel Ashbrook, Wei-Ju Lin, Nicholas Bentley, Diana Soponar, Zeyu Yan, Valkyrie Savage, Lung-Pan Cheng, Huaishu Peng, Hyunyoung Kim
Abstract
We introduce Rhapso, a 3D printing system designed to embed a diverse range of continuous fiber materials within 3D objects during the printing process. This approach enables integrating properties like tensile strength, force storage and transmission, or aesthetic and tactile characteristics, directly into low-cost thermoplastic 3D prints. These functional objects can have intricate actuation, self-assembly, and sensing capabilities with little to no manual intervention. To achieve this, we modify a low-cost Fused Filament Fabrication (FFF) 3D printer, adding a stepper motor-controlled fiber spool mechanism on a gear ring above the print bed. In addition to hardware, we provide parsing software for precise fiber placement, which generates G-code for printer operation. To illustrate the versatility of our system, we present applications that showcase its extensive design potential. Additionally, we offer comprehensive documentation and open designs, empowering others to replicate our system and explore its possibilities.
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.
Builds on16
- OmniFiber: Integrated Fluidic Fiber Actuators for Weaving Movement based Interactions into the 'Fabric of Everyday Life'Ozgun Kilic Afsar, Ali Shtarbanov, Hila Mor, Ken Nakagaki et al.UIST 2021 · 117 citations
- Digital Fabrication of Pneumatic Actuators with Integrated Sensing by Machine KnittingYiyue Luo, Kui Wu, Andrew Spielberg, Michael Foshey et al.CHI 2022 · 110 citations
- DefeXtiles: 3D Printing Quasi-Woven Fabric via Under-ExtrusionJack Forman, Mustafa Doga Dogan, Hamilton Forsythe, Hiroshi IshiiUIST 2020 · 104 citations
- KnitUI: Fabricating Interactive and Sensing Textiles with Machine KnittingYiyue Luo, Kui Wu, Tomás Palacios, Wojciech MatusikCHI 2021 · 101 citations
- ReCompFig: Designing Dynamically Reconfigurable Kinematic Devices Using Compliant Mechanisms and Tensioning CablesHumphrey Yang, Tate Johnson, Ke Zhong, Dinesh K. Patel et al.CHI 2022 · 69 citations
Related papers
- Xstrings: 3D Printing Cable-Driven Mechanism for Actuation, Deformation, and ManipulationJiaji Li, Shuyue Feng, Maxine Perroni-Scharf, Yujia Liu et al.CHI 2025 · 13 citations
- Xspine: Integrating Motion Sensing Capability into Dynamic Structures Using Multi-material FDM 3D PrintingMingming Li, Dingning Cao, Xiang Chang, Karla Sahin et al.CHI 2026 · 1 citation
- InfoPrint: Embedding Interactive Information in 3D Prints Using Low-Cost Readily-Available Printers and MaterialsWeiwei Jiang, Chaofan Wang, Zhanna Sarsenbayeva, Andrew Irlitti et al.UbiComp 2023 · 4 citations
- Substiports: User-Inserted Ad Hoc Objects as Reusable Structural Support for Unmodified FDM 3D PrintersLudwig Wilhelm Wall, Oliver Schneider, Daniel VogelUIST 2023 · 10 citations
- Speed-Modulated Ironing: High-Resolution Shade and Texture Gradients in Single-Material 3D PrintingMehmet Özdemir, Marwa Alalawi, Mustafa Doga Dogan, Jose Francisco Martinez Castro et al.UIST 2024 · 7 citations
