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Trampoline: a double-sided elastic touch device for repoussé and chasing techniques

Published: 26 April 2014 Publication History

Abstract

Relief is often used to add patterns to product surfaces, but interaction techniques for modeling relief on the surface of virtual objects have not received due attention. We adopt the repoussé and chasing artwork techniques in an alternative interaction technique for modeling relief on virtual surfaces. To support the interaction technique, we develop a double-sided touchpad called Trampoline that can detect the position and force of a finger touch on both sides. In addition, it provides an elastic feedback to users as the surface consists of an elastic fabric. With this device and the interaction technique developed, we implement a relief application and present modeling results that demonstrate the efficacy of our system.

Supplementary Material

ZIP File (wip0386-file3.zip)
Zip file containing a PDF of the Accompanying Poster and a video that explains the working principle and interaction techniques of our device.

References

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Follmer, S., Johnson, M., Adelson, E., and Ishii. H., deForm: An Interactive Malleable Surface For Capturing 2.5D Arbitrary Objects, Tools and Touch. In Proc. UIST, ACM Press (2011), 527--536.
[2]
Galyean, T. A., and Hughes, J. F. Sculpting: An Interactive Volumetric Modeling Technique. In Proc. SIGGRAPH, ACM Press (1991), 267--274.
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Lee, G., Lee, S., Bang, W.-C., and Kim, Y. A TV Pointing Device Using LED Directivity. In Proc. ICCE, IEEE (2011), 619--620.
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McDonnell, K. T., Qin, H., and Wlodarczyk, R. A. Virtual Clay: A Real-time Sculpting System with Haptic Yoolkits. In Proc. Interactive 3D graphics, ACM Press (2001), 179--190.
[5]
Relievos, Apple App Store, https://itunes.apple.com/app
[6]
Sheng, J., Balakrishnan, R., and Singh, K. An Interface for Virtual 3D Sculpting via Physical Proxy. In Proc. GRAPHITE, ACM Press (2006), 213--220.
[7]
Smith, R. T., Thomas, B. H., and Piekarski, W. Digital Foam Interaction Techniques for 3D Modeling. In Proc. VRST, ACM Press (2008), 61--68.
[8]
Vlack, K., Mizota, T., Kawakami, N., Kamiyama, K., Kajimoto, H., and Tachi, S., GelForce: A Vision-based Traction Field Computer Interface. In Porc. CHI EA, ACM Press (2005), 1154--1155.
[9]
Wigdor, D., Leigh, D., Forlines, C., Shipman, S., Barnwell, J., Balakrishnan, R., and Shen, C. Under the Table Interaction. In Proc. UIST, ACM Press (2006), 259--268.

Cited By

View all
  • (2024)DeformIO: Dynamic Stiffness Control on a Deformable Force-sensing DisplayExtended Abstracts of the CHI Conference on Human Factors in Computing Systems10.1145/3613905.3650772(1-8)Online publication date: 11-May-2024
  • (2023)Feel the Force, See the Force: Exploring Visual-tactile Associations of Deformable Surfaces with Colours and ShapesProceedings of the 2023 CHI Conference on Human Factors in Computing Systems10.1145/3544548.3580830(1-13)Online publication date: 19-Apr-2023
  • (2016)TableHopProceedings of the 2016 CHI Conference on Human Factors in Computing Systems10.1145/2858036.2858544(3767-3780)Online publication date: 7-May-2016
  • Show More Cited By

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  1. Trampoline: a double-sided elastic touch device for repoussé and chasing techniques

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    Published In

    cover image ACM Conferences
    CHI EA '14: CHI '14 Extended Abstracts on Human Factors in Computing Systems
    April 2014
    2620 pages
    ISBN:9781450324748
    DOI:10.1145/2559206
    Permission to make digital or hard copies of part or all of this work for personal or classroom use is granted without fee provided that copies are not made or distributed for profit or commercial advantage and that copies bear this notice and the full citation on the first page. Copyrights for third-party components of this work must be honored. For all other uses, contact the Owner/Author.

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    Association for Computing Machinery

    New York, NY, United States

    Publication History

    Published: 26 April 2014

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    Author Tags

    1. 3d modeling
    2. double-sided touchpad
    3. elastic touchpad
    4. repoussé and chasing
    5. trampoline

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    CHI '14
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    CHI '14: CHI Conference on Human Factors in Computing Systems
    April 26 - May 1, 2014
    Ontario, Toronto, Canada

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    CHI EA '14 Paper Acceptance Rate 1,000 of 3,200 submissions, 31%;
    Overall Acceptance Rate 6,164 of 23,696 submissions, 26%

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    Cited By

    View all
    • (2024)DeformIO: Dynamic Stiffness Control on a Deformable Force-sensing DisplayExtended Abstracts of the CHI Conference on Human Factors in Computing Systems10.1145/3613905.3650772(1-8)Online publication date: 11-May-2024
    • (2023)Feel the Force, See the Force: Exploring Visual-tactile Associations of Deformable Surfaces with Colours and ShapesProceedings of the 2023 CHI Conference on Human Factors in Computing Systems10.1145/3544548.3580830(1-13)Online publication date: 19-Apr-2023
    • (2016)TableHopProceedings of the 2016 CHI Conference on Human Factors in Computing Systems10.1145/2858036.2858544(3767-3780)Online publication date: 7-May-2016
    • (2016)The Smart Armband: Expanding Wearable Interface Area and Suggesting Interaction ScenariosInformation Science and Applications (ICISA) 201610.1007/978-981-10-0557-2_128(1361-1365)Online publication date: 16-Feb-2016
    • (2014)TrampolineProceedings of the 27th annual ACM symposium on User interface software and technology10.1145/2642918.2647381(383-388)Online publication date: 5-Oct-2014

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