WORM: Programming Collaborative Robots Through Manual Actions for Craft-Aligned Digital Fabrication

Aging-Friendly Technology DesignDesktop 3D Printing & Personal FabricationCustomizable & Personalized ObjectsProduct DesignersMakers & DIY EnthusiastsCraft Artisans (Textiles, Ceramics, etc.)

Collaborative robotic (cobot) arms enable digital fabrication practitioners to engage in safe and adaptable robotic interactions. Cobot machining involves similar principles to CNC operation; however, cobot fabrication workflows are more complex than CNC because they require both programming expertise and material knowledge. These requirements limit the adoption of cobots in manufacturing and craft. Prior cobot fabrication research frames the robot as a generative partner, but we seek to enable artists to precisely specify domain-specific machining operations. We contribute a novel cobot programming framework that allows artists to use manual interaction with the robot to define robotic behaviors. We identified four interaction modes to enhance human-robot collaboration in digital fabrication. We used these modes to develop the Workflow-Oriented Robotic Manufacturing (WORM) system. We informed our development through need-finding interviews with two professional ceramicists and assessed our system through a preliminary study with a professional painter, production of exemplar artifacts, and an expert evaluation with a professional ceramicist.

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https://hci.top/en/papers/uist/206862/2025

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DOI: https://doi.org/10.1145/3746059.3747616
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UIST
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Year
2025
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5 authors
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Subtopics
Aging-Friendly Technology Design, Desktop 3D Printing & Personal Fabrication, Customizable & Personalized Objects
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Product Designers, Makers & DIY Enthusiasts, Craft Artisans (Textiles, Ceramics, etc.)
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Abstract only
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