“Hands-on Exploration of Hybrid 4D Printing Design Space” by Deshpande, Starrett, Seo, Zheng and Kim

  • ©Himani Deshpande, Courtney Starrett, Jinsil Hwaryoung Seo, Clement Zheng, and Jeeeun Kim

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    Hands-on Exploration of Hybrid 4D Printing Design Space

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    4D printing is an emerging field of fabrication garnering interest from the HCI community in its potential applications. In this work we present a hands-on exploration of the hybrid design space for 4D printing which makers can utilize to create their own artifacts by designing parts to control their bend, supply different heat triggers, and integrate craft techniques based on the intended use.

References:


    1. Byoungkwon An, Ye Tao, Jianzhe Gu, Tingyu Cheng, Xiang ’Anthony’ Chen, Xiaoxiao Zhang, Wei Zhao, Youngwook Do, Shigeo Takahashi, Hsiang-Yun Wu, Teng Zhang, and Lining Yao. 2018. Thermorph: Democratizing 4D Printing of Self-Folding Materials and Interfaces. In Proceedings of the 2018 CHI Conference on Human Factors in Computing Systems (Montreal QC, Canada) (CHI ’18). Association for Computing Machinery, New York, NY, USA, 1–12. https://doi.org/10.1145/3173574.3173834
    2. Tian Chen, Osama R Bilal, Kristina Shea, and Chiara Daraio. 2018. Harnessing bistability for directional propulsion of soft, untethered robots. Proceedings of the National Academy of Sciences 115, 22(2018), 5698–5702.
    3. Himani Deshpande, Clement Zheng, Courtney Starrett, Jinsil Hwaryoung Seo, and Jeeeun Kim. 2022. Fab4D: An Accessible Hybrid Approach for Programmable Shaping and Shape Changing Artifacts. In Sixteenth International Conference on Tangible, Embedded, and Embodied Interaction (Daejeon, Republic of Korea) (TEI ’22). Association for Computing Machinery, New York, NY, USA, Article 70, 7 pages. https://doi.org/10.1145/3490149.3505574
    4. Darrell Etherington. 2016. MIT’s shape-shifting 3D-printed objects could improve medicine and solar-power. https://techcrunch.com/2016/08/26/mits-shape-shifting-3d-printed-objects-could-improve-medicine-and-solar-power/ (Accessed on 1/16/2022).
    5. Jianzhe Gu, David E. Breen, Jenny Hu, Lifeng Zhu, Ye Tao, Tyson Van de Zande, Guanyun Wang, Yongjie Jessica Zhang, and Lining Yao. 2019. Geodesy: Self-Rising 2.5D Tiles by Printing along 2D Geodesic Closed Path. In Proceedings of the 2019 CHI Conference on Human Factors in Computing Systems (Glasgow, Scotland Uk) (CHI ’19). Association for Computing Machinery, New York, NY, USA, 1–10. https://doi.org/10.1145/3290605.3300267
    6. Joseph Kerry and Paul Butler. 2008. Smart packaging technologies for fast moving consumer goods. John Wiley & Sons.
    7. Fang Qin, Huai-Yu Cheng, Rachel Sneeringer, Maria Vlachostergiou, Sampada Acharya, Haolin Liu, Carmel Majidi, Mohammad Islam, and Lining Yao. 2021. ExoForm: Shape Memory and Self-Fusing Semi-Rigid Wearables. In Extended Abstracts of the 2021 CHI Conference on Human Factors in Computing Systems (Yokohama, Japan) (CHI EA ’21). Association for Computing Machinery, New York, NY, USA, Article 249, 8 pages. https://doi.org/10.1145/3411763.3451818
    8. Simplify3D. 2019. Properties Table. https://www.simplify3d.com/support/materials-guide/properties-table/ (Accessed on 10/17/2021).
    9. Yasaman Tahouni, Tiffany Cheng, Dylan Wood, Renate Sachse, Rebecca Thierer, Manfred Bischoff, and Achim Menges. 2020. Self-Shaping Curved Folding: A 4D-Printing Method for Fabrication of Self-Folding Curved Crease Structures. In Symposium on Computational Fabrication (Virtual Event, USA) (SCF ’20). Association for Computing Machinery, New York, NY, USA, Article 5, 11 pages. https://doi.org/10.1145/3424630.3425416
    10. Kazuto Takashima, Jonathan Rossiter, and Toshiharu Mukai. 2010. McKibben artificial muscle using shape-memory polymer. Sensors and Actuators A: Physical 164, 1-2 (2010), 116–124.
    11. Guanyun Wang, Ye Tao, Ozguc Bertug Capunaman, Humphrey Yang, and Lining Yao. 2019. A-Line: 4D Printing Morphing Linear Composite Structures. In Proceedings of the 2019 CHI Conference on Human Factors in Computing Systems (Glasgow, Scotland Uk) (CHI ’19). Association for Computing Machinery, New York, NY, USA, 1–12. https://doi.org/10.1145/3290605.3300656

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