Roadkill: Nesting Laser-Cut Objects for Fast Assembly
Muhammad Abdullah, Romeo Sommerfeld, Laurenz Seidel, Jonas Noack, Ran Zhang, Thijs Roumen, Patrick Baudisch
Abstract
We present Roadkill, a software tool that converts 3D models to 2D cutting plans for laser cutting—such that the resulting layouts allow for fast assembly. Roadkill achieves this by putting all relevant information into the cutting plan: (1) Thumbnails indicate which area of the model a set of parts belongs to. (2) Parts with exposed finger joints are easy to access, thereby suggesting to start assembly here. (3) Openings in the sheet act as jigs, affording assembly within the sheet. (4) Users continue assembly by inserting what has already been assembled into parts that are immediately adjacent or are pointed to by arrows. Roadkill maximizes the number of joints rendered in immediate adjacency by breaking down models into “subassemblies.” Within a subassembly, Roadkill holds the parts together using break-away tabs. (5) Users complete subassemblies according to their labels 1, 2, 3…, following 1 -> 1 links to insert subassemblies into other subassemblies, until all parts come together. In our user study, Roadkill allowed participants to assemble layouts 2.4 times faster than layouts generated by a traditional pair-wise labeling of plates.
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 af3946a5-fea7-4625-ae4b-a0be0d502371Cited by top-tier papers6
- FoolProofJoint: Reducing Assembly Errors of Laser Cut 3D Models by Means of Custom Joint PatternsKeunwoo Park, Conrad Lempert, Muhammad Abdullah, Shohei Katakura et al.CHI 2022 · 25 citations
- HingeCore: Laser-Cut Foamcore for Fast AssemblyMuhammad Abdullah, Romeo Sommerfeld, Bjarne Sievers, Leonard Geier et al.UIST 2022 · 21 citations
- Measurement Patterns: User-Oriented Strategies for Dealing with Measurements and Dimensions in Making ProcessesRaf Ramakers, Danny Leen, Jeeeun Kim, Kris Luyten et al.CHI 2023 · 11 citations
- Understanding (Non-)Visual Needs for the Design of Laser-Cut ModelsRuei-Che Chang, Seraphina Yong, Fang-Ying Liao, Chih-An Tsao et al.CHI 2023 · 5 citations
- Kerfmeter: Automatic Kerf Calibration for Laser CuttingShohei Katakura, Martin Taraz, Muhammad Abdullah, Paul Methfessel et al.CHI 2023 · 5 citations
Builds on5
- LaserFactory: A Laser Cutter-based Electromechanical Assembly and Fabrication Platform to Make Functional Devices & RobotsMartin Nisser, Christina Chen Liao, Yuchen Chai, Aradhana Adhikari et al.CHI 2021 · 53 citations
- Pop-up Print: Rapidly 3D Printing Mechanically Reversible Objects in the Folded StateYuta Noma, Koya Narumi, Fuminori Okuya, Yoshihiro KawaharaUIST 2020 · 27 citations
- Fabricaide: Fabrication-Aware Design for 2D Cutting MachinesTicha Sethapakdi, Daniel Anderson, Adrian Reginald Chua Sy, Stefanie MüllerCHI 2021 · 26 citations
- LamiFold: Fabricating Objects with Integrated Mechanisms Using a Laser cutter Lamination WorkflowDanny Leen, Nadya Peek, Raf RamakersUIST 2020 · 25 citations
- Assembler3: 3D Reconstruction of Laser-Cut ModelsThijs Roumen, Yannis Kommana, Ingo Apel, Conrad Lempert et al.CHI 2021 · 22 citations
Related papers
- Mallet-Based Assembly: Enabling Load-Bearing Laser-Cut ModelsShohei Katakura, Chiao Fang, Mehdi Gouasmi, Lino Hellige et al.UIST 2025
- FastForce: Real-Time Reinforcement of Laser-Cut StructuresMuhammad Abdullah, Martin Taraz, Yannis Kommana, Shohei Katakura et al.CHI 2021 · 19 citations
- Flaticulation: Laser Cutting Joints with Articulated AnglesChiao Fang, Vivian Hsinyueh Chan, Lung-Pan ChengUIST 2022 · 10 citations
- autoAssembler: Automatic Reconstruction of Laser-Cut 3D ModelsThijs Roumen, Conrad Lempert, Ingo Apel, Erik Brendel et al.UIST 2021 · 14 citations
- Daedalus in the Dark: Designing for Non-Visual Accessible Construction of Laser-Cut ArchitectureRuei-Che Chang, Chih-An Tsao, Fang-Ying Liao, Seraphina Yong et al.UIST 2021 · 14 citations
