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

, , , , , , , and . CHI, page 569. ACM, (2018)

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Material characterization and precise finite element analysis of fiber reinforced thermoplastic composites for 4D printing., , , , , , , , and . Comput. Aided Des., (2020)Thermoplastic Fiber Reinforced Composite Material Characterization and Precise Finite Element Analysis for 4D Printing., , , , , , , , and . CoRR, (2019)Demonstrating Printed Paper Actuator: A Low-cost Reversible Actuation and Sensing Method for Shape Changing Interfaces., , , , , , , and . CHI Extended Abstracts, ACM, (2018)FlexTure: Designing Configurable and Dynamic Surface Features., , , , , and . Conference on Designing Interactive Systems, page 580-593. ACM, (2023)SimuLearn: Fast and Accurate Simulator to Support Morphing Materials Design and Workflows., , , , , , , and . UIST, page 71-84. ACM, (2020)Demonstrating ReCompFig: Designing Dynamically Reconfigurable Kinematic Devices Using Compliant Mechanisms and Tensioning Cables., , , , , , , and . CHI Extended Abstracts, page 204:1-204:4. ACM, (2022)4D Printing A-line., , , , and . CHI Extended Abstracts, ACM, (2019)A-line: 4D Printing Morphing Linear Composite Structures., , , , and . CHI, page 426. ACM, (2019)ReCompFig: Designing Dynamically Reconfigurable Kinematic Devices Using Compliant Mechanisms and Tensioning Cables., , , , , , , and . CHI, page 170:1-170:14. ACM, (2022)Showcasing Printed Paper Actuator: A Low-cost Reversible Actuation and Sensing Method for Shape Changing Interfaces., , , , , , , and . CHI Extended Abstracts, ACM, (2018)