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Title: DuoMorph : synergistic integration of FDM printing and pneumatic actuation for shape-changing interfaces
Authors: Li, X 
Huang, D
Yu, T
Yin, S
Gao, B
Matsumoto, A
Yao, Z
Zhao, Y
Lyu, S
Tian, Y
Yao, L
Mi, H
Lu, Q 
Issue Date: 2026
Source: In CHI '26: Proceedings of the 2026 CHI Conference on Human Factors in Computing Systems, 1362. New York, NY: Association for Computing Machinery, 2026
Abstract: We introduce DuoMorph, a design and fabrication method that synergistically integrates Fused Deposition Modeling(FDM) printing and pneumatic actuation to create novel shape-changing interfaces. In DuoMorph, the printed structures and heat-sealed pneumatic elements are mutually designed to actuate and constrain each other, enabling functions that are difficult for either component to achieve in isolation. Moreover, the entire hybrid structure can be fabricated through a single, seamless process using only a standard FDM printer—including both heat-sealing and 3D/4D printing. In this paper, we define a design space including four primitive categories that capture the fundamental ways in which printed and pneumatic components can interact. To support this process, we present a fabrication method and an accompanying design tool. Finally, we demonstrate the potential of DuoMorph through example applications and performance demonstrations.
Keywords: 4D printing
Fabrication
FDM printing
Pneumatic interface
Shape-changing interface
Publisher: Association for Computing Machinery
ISBN: 979-8-4007-2278-3
DOI: 10.1145/3772318.3791040
Description: CHI 2026: CHI Conference on Human Factors in Computing Systems Barcelona Spain April 13-17, 2026
Rights: This work is licensed under a Creative Commons Attribution 4.0 International License (https://creativecommons.org/licenses/by/4.0).
© 2026 Copyright held by the owner/author(s).
The following publication Li, X., Huang, D., Yu, T., Yin, S., Gao, B., Matsumoto, A., Yao, Z., Zhao, Y., Lyu, S., Tian, Y., Yao, L., Mi, H., & Lu, Q. (2026). DuoMorph: Synergistic Integration of FDM Printing and Pneumatic Actuation for Shape-Changing Interfaces Proceedings of the 2026 CHI Conference on Human Factors in Computing Systems is available at https://doi.org/10.1145/3772318.3791040.
Appears in Collections:Conference Paper

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