ShrinCage: 4D Printing Accessories that Self-Adapt
Lingyun Sun, Yue Yang, Yu Chen, Jiaji Li, Danli Luo, Haolin Liu, Lining Yao, Ye Tao, Guanyun Wang
Abstract
3D printing technology makes Do-It-Yourself and reforming everyday objects a reality. However, designing and fabricating attachments that can seamlessly adapt existing objects to extended functionality is a laborious process, which requires accurate measuring, modeling, manufacturing, and assembly. This paper presents ShrinCage, a 4D printing system that allows novices to easily create shrinkable adaptations to fit and fasten existing objects. Specifically, the design tool presented in this work aid in the design of attachment that adapts to irregular morphologies, which accommodates the variations in measurements and fabrication, subsequently simplifying the modeling and assembly processes. We further conduct mechanical tests and user studies to evaluate the availability and feasibility of this method. Numerous application examples created by ShrinCage prove that it can be adopted by aesthetic modification, assistive technology, repair, upcycling, and augmented 3D printing.
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Install the CLIlune papers fulltext e65cf447-8cd9-4064-b87d-8452b392fdbcCited by top-tier papers6
- ShrinkCells: Localized and Sequential Shape-Changing Actuation of 3D-Printed Objects via Selective HeatingKongpyung (Justin) Moon, Haeun Lee, Jeeeun Kim, Andrea BianchiUIST 2022 · 20 citations
- EpoMemory: Multi-state Shape Memory for Programmable Morphing InterfacesKe Zhong, Adriane Fernandes Minori, Di Wu, Humphrey Yang et al.CHI 2023 · 12 citations
- Measurement Patterns: User-Oriented Strategies for Dealing with Measurements and Dimensions in Making ProcessesRaf Ramakers, Danny Leen, Jeeeun Kim, Kris Luyten et al.CHI 2023 · 11 citations
- Speed-Modulated Ironing: High-Resolution Shade and Texture Gradients in Single-Material 3D PrintingMehmet Özdemir, Marwa Alalawi, Mustafa Doga Dogan, Jose Francisco Martinez Castro et al.UIST 2024 · 7 citations
- InfoPrint: Embedding Interactive Information in 3D Prints Using Low-Cost Readily-Available Printers and MaterialsWeiwei Jiang, Chaofan Wang, Zhanna Sarsenbayeva, Andrew Irlitti et al.UbiComp 2023 · 4 citations
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