Thermoformed Circuit Boards: Fabrication of highly conductive freeform 3D printed circuit boards with heat bending
Freddie Taewoo Hong, Connor W. Myant, David E. Boyle
Abstract
Fabricating 3D printed electronics using desktop printers has become more accessible with recent developments in conductive thermoplastic filaments. Because of their high resistance and difficulties in printing traces in vertical directions, most applications are restricted to capacitive sensing. In this paper, we introduce Thermoformed Circuit Board (TCB), a novel approach that employs the thermoformability of the 3D printed plastics to construct various double-sided, rigid and highly conductive freeform circuit boards that can withstand high current applications through copper electroplating. To illustrate the capability of the TCB, we showcase a range of examples with various shapes, electrical characteristics and interaction mechanisms. We also demonstrate a new design tool extension to an existing CAD environment that allows users to parametrically draw the substrate and conductive trace, and export 3D printable files. TCB is an inexpensive and highly accessible fabrication technique intended to broaden HCI researcher participation.
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 91e0552d-6c47-40ea-a9d5-e15bf899b268Cited by top-tier papers9
- Fibercuit: Prototyping High-Resolution Flexible and Kirigami Circuits with a Fiber Laser EngraverZeyu Yan, Anup Sathya, Sahra Yusuf, Jyh-Ming Lien et al.UIST 2022 · 31 citations
- ModElec: A Design Tool for Prototyping Physical Computing Devices Using Conductive 3D PrintingLiang He, Jarrid A. Wittkopf, Ji Won Jun, Kris Erickson et al.UbiComp 2022 · 21 citations
- ShrinkCells: Localized and Sequential Shape-Changing Actuation of 3D-Printed Objects via Selective HeatingKongpyung (Justin) Moon, Haeun Lee, Jeeeun Kim, Andrea BianchiUIST 2022 · 20 citations
- Capacitive Touch Sensing on General 3D SurfacesGianpaolo Palma, Narges Pourjafarian, Jürgen Steimle, Paolo CignoniSIGGRAPH 2024 · 13 citations
- DisplayFab: The State of the Art and a Roadmap in the Personal Fabrication of Free-Form Displays Using Active Materials and Additive ManufacturingOllie Hanton, Mike Fraser, Anne RoudautCHI 2024 · 13 citations
Builds on2
- ProtoSpray: Combining 3D Printing and Spraying to Create Interactive Displays with Arbitrary ShapesOllie Hanton, Michael Wessely, Stefanie Mueller, Mike Fraser et al.CHI 2020 · 51 citations
- MorphSensor: A 3D Electronic Design Tool for Reforming Sensor ModulesJunyi Zhu, Yunyi Zhu, Jiaming Cui, Leon Cheng et al.UIST 2020 · 31 citations
Related papers
- E-Joint: Fabrication of Large-Scale Interactive Objects Assembled by 3D Printed Conductive Parts with Copper Plated JointsXiaolong Li, Cheng Yao, Shang Shi, Shuyue Feng et al.UIST 2024 · 5 citations
- ProForm: Solder-Free Circuit Assembly Using ThermoformingNarjes Pourjafarian, Zhenming Yang, Jeffrey Ian Lipton, Benyamin Davaji et al.UIST 2025 · 2 citations
- IrOnTex: Using Ironable 3D Printed Objects to Fabricate and Prototype Customizable Interactive TextilesJiakun Yu, Supun Kuruppu, Biyon Fernando, Praneeth Bimsara Perera et al.UbiComp 2024 · 16 citations
- MorphingCircuit: An Integrated Design, Simulation, and Fabrication Workflow for Self-morphing ElectronicsGuanyun Wang, Fang Qin, Haolin Liu, Ye Tao et al.UbiComp 2021 · 51 citations
- DissolvPCB: Fully Recyclable 3D-Printed Electronics Using Liquid Metal Conductors and PVA SubstratesZeyu Yan, SuHwan Hong, Josiah D. Hester, Tingyu Cheng et al.UIST 2025 · 11 citations
