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Print-N-Grip: A Disposable, Compliant, Scalable and One-Shot 3D-Printed Multi-Fingered Robotic Hand

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arxiv 2401.16463 v2 pith:GRARB2KB submitted 2024-01-29 cs.RO

classification cs.RO
keywords handadditionalcontaminationhoweverone-shotprint-n-gripprintingrobotic
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Robotic hands are an important tool for replacing humans in handling toxic or radioactive materials. However, these are usually highly expensive, and in many cases, once they are contaminated, they cannot be re-used. Some solutions cope with this challenge by 3D printing parts of a tendon-based hand. However, fabrication requires additional assembly steps. Therefore, a novice user may have difficulties fabricating a hand upon contamination of the previous one. We propose the Print-N-Grip (PNG) hand which is a tendon-based underactuated mechanism able to adapt to the shape of objects. The hand is fabricated through one-shot 3D printing with no additional engineering effort, and can accommodate a number of fingers as desired by the practitioner. Due to its low cost, the PNG hand can easily be detached from a universal base for disposing upon contamination, and replaced by a newly printed one. In addition, the PNG hand is scalable such that one can effortlessly resize the computerized model and print. We present the design of the PNG hand along with experiments to show the capabilities and high durability of the hand.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. DEXOP: A Device for Robotic Transfer of Dexterous Human Manipulation

    cs.RO 2025-09 conditional novelty 6.0 of 10

    DEXOP implements perioperation with a passive exoskeleton linked to a sensorized robot hand, and DEXOP-collected demonstrations train robot policies more efficiently per unit time than teleoperation.

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