FibeRobo: Fabricating 4D Fiber Interfaces by Continuous Drawing of Temperature Tunable Liquid Crystal Elastomers

要旨

We present FibeRobo, a thermally-actuated liquid crystal elastomer (LCE) fiber that can be embedded or structured into textiles and enable silent and responsive interactions with shape-changing, fiber-based interfaces. Three definitive properties distinguish FibeRobo from other actuating fibers explored in HCI. First, they exhibit rapid thermal self-reversing actuation with large displacements (~40%) without twisting. Second, we present a reproducible UV fiber drawing setup that produces hundreds of meters of fiber with a sub-millimeter diameter. Third, FibeRobo is fully compatible with existing textile manufacturing machinery such as weaving looms, embroidery, and industrial knitting machines. This paper contributes to developing temperature-responsive LCE fibers, a facile and scalable fabrication pipeline with optional heating element integration for digital control, mechanical characterization, and the establishment of higher hierarchical textile structures and design space. Finally, we introduce a set of demonstrations that illustrate the design space FibeRobo enables.

著者
Jack Forman
Massachusetts Institute of Technology, Cambridge, Massachusetts, United States
Ozgun Kilic Afsar
MIT, Cambridge, Massachusetts, United States
Sarah Nicita
Massachusetts Institute of Technology, Cambridge, Massachusetts, United States
Rosalie Hsin-Ju. Lin
Massachusetts Institute of Technology, Cambridge, Massachusetts, United States
Liu Yang
Massachusetts Institute of Technology, Cambridge, Massachusetts, United States
Megan Hofmann
Northeastern University, Boston, Massachusetts, United States
Akshay Kothakonda
Massachusetts Institute of Technology, Cambridge, Massachusetts, United States
Zachary Gordon
MIT Media Lab, Boston, Massachusetts, United States
Cedric Honnet
MIT, Cambridge, Massachusetts, United States
Kristen Dorsey
Northeastern University, Boston, Massachusetts, United States
Neil Gershenfeld
Massachusetts Institute of Technology, Cambridge, Massachusetts, United States
Hiroshi Ishii
MIT, Cambridge, Massachusetts, United States
論文URL

https://doi.org/10.1145/3586183.3606732

動画

会議: UIST 2023

ACM Symposium on User Interface Software and Technology

セッション: Creative Makers: Textiles, Craft and Computation

Venetian Room
6 件の発表
2023-10-30 23:20:00
2023-10-31 00:40:00