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Kirigami Haptic Swatches: Design Methods for Cut-and-Fold Haptic Feedback Mechanisms

Published: 23 April 2020 Publication History

Abstract

Kirigami Haptic Swatches demonstrate how kirigami and origami based structures enable sophisticated haptic feedback through simple cut-and-fold fabrication techniques. We leverage four types of geometric patterns: rotational erection system (RES), split-fold waterbomb (SFWB), the overlaid structure of SFWB and RES (SFWB+RES), and cylindrical origami, to render different sets of haptic feedback (i.e. linear, bistable, bouncing snap-through, and rotational force behaviors, respectively). In each structure, not only the form factor but also the force feedback properties can be tuned through geometric parameters. We experimentally analyzed and modeled the structures, and implemented software to automatically generate 2D patterns for desired haptic properties. We also demonstrate five example applications including an assistive custom keyboard, rotational switch, multi-sensory toy, task checklist, and phone accessories. We believe the Kirigami Haptic Swatches helps tinkerers, designers, and even researchers to create interactions that enrich our haptic experience.

Supplementary Material

ZIP File (paper526aux.pdf.zip)
We moved several mathematical assumptions and details of experiment setup to Auxiliary Material ?Kirigami Haptic Swatches - S1.pdf?
MP4 File (paper526vf.mp4)
Supplemental video
MP4 File (paper526pv.mp4)
Preview video
MP4 File (a526-chang-presentation.mp4)

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      cover image ACM Conferences
      CHI '20: Proceedings of the 2020 CHI Conference on Human Factors in Computing Systems
      April 2020
      10688 pages
      ISBN:9781450367080
      DOI:10.1145/3313831
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      Published: 23 April 2020

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      Author Tags

      1. Kirigami structure
      2. computational fabrication
      3. design methods
      4. haptics
      5. paper button

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      • (2024)Designing Mechanical 3D Metamaterials with Tension-Active ModulesAdjunct Proceedings of the 9th ACM Symposium on Computational Fabrication10.1145/3665662.3673261(1-3)Online publication date: 7-Jul-2024
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