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Showcasing Printed Paper Actuator: A Low-cost Reversible Actuation and Sensing Method for Shape Changing Interfaces.

, , , , , , , and . CHI Extended Abstracts, ACM, (2018)

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An End-to-End Approach to Self-Folding Origami Structures., , , , , , , and . IEEE Trans. Robotics, 34 (6): 1409-1424 (2018)A Design Environment for the Rapid Specification and Fabrication of Printable Robots., , , , , , and . ISER, volume 109 of Springer Tracts in Advanced Robotics, page 435-449. Springer, (2014)Showcasing Printed Paper Actuator: A Low-cost Reversible Actuation and Sensing Method for Shape Changing Interfaces., , , , , , , and . CHI Extended Abstracts, ACM, (2018)Making shapes from modules by magnification., and . IROS, page 1140-1145. IEEE, (2010)Demonstrating Printed Paper Actuator: A Low-cost Reversible Actuation and Sensing Method for Shape Changing Interfaces., , , , , , , and . CHI Extended Abstracts, ACM, (2018)Demonstrating Thermorph: Democratizing 4D Printing of Self-Folding Materials and Interfaces., , , , , , , , , and . CHI Extended Abstracts, ACM, (2018)Thermorph: Democratizing 4D Printing of Self-Folding Materials and Interfaces., , , , , , , , , and 2 other author(s). CHI, page 260. ACM, (2018)An end-to-end approach to making self-folded 3D surface shapes by uniform heating., , , , , , , , and . ICRA, page 1466-1473. IEEE, (2014)Programming and controlling self-folding robots., and . ICRA, page 3299-3306. IEEE, (2012)Designing and programming self-folding sheets., and . Robotics Auton. Syst., 62 (7): 976-1001 (2014)