MorphingSkin: A Skin-like Platform that Integrates Multimodal Hydraulic Actuators Based on Flexible Electroosmotic Pumps
Tianyu Yu, Peisheng He, Bob Tianqi Wei, Chenyuheng Wang, Xueqing Li, Xuezhu Wang, Yao Lu, Wei Yue, Megan Teng, Zihan Wang, Liwei Lin, Haipeng Mi
Abstract
Interactive surfaces have garnered significant attention in Human-Computer Interaction, with fluid-driven actuators being a promising actuation technology due to their flexible form factors and multimodal interactivities. However, traditional fluid-driven systems typically rely on bulky and noisy electromechanical hardware, limiting their portability and practicality. While recent work has introduced compact hydraulic actuators like electroosmotic pumps (EOPs) in haptic devices, their potential for building multifunctional interactive surfaces remains largely unexplored. In this work, we present MorphingSkin, a skin-like platform that integrates multiple, multimodal hydraulic actuators using flexible EOPs as lightweight and self-contained fluidic actuators. We introduce the architecture of MorphingSkin and its versatile design space for multimodal actuation in force, shape, optical, and weight domains. We demonstrate interactive and robotic applications that integrate multiple actuators working collectively within a single MorphingSkin device. Through this work, we envision the future of using MorphingSkin technology for interactive surfaces that integrate flexible form factors and multimodal actuation capabilities.
Ask about this paper
Ask your agent about it.
Lune has read the top-tier papers around this one, so every answer names the papers it rests on.
Your agent calls
Lunesearch_papers
Free to start. No credit card required.
Terminal
Install the CLIlune papers get feb65697-fe6a-46fa-9137-53a83b3dd1bdRelated papers
- Flat Panel Haptics: Embedded Electroosmotic Pumps for Scalable Shape DisplaysCraig D. Shultz, Chris HarrisonCHI 2023 · 57 citations
- HapBead: On-Skin Microfluidic Haptic Interface using Tunable BeadTeng Han, Shubhi Bansal, Xiaochen Shi, Yanjun Chen et al.CHI 2020 · 25 citations
- HapTag: A Compact Actuator for Rendering Push-Button Tactility on Soft SurfacesYanjun Chen, Xuewei Liang, Si Chen, Yuwen Chen et al.UIST 2022 · 20 citations
- HydroMod : Constructive Modules for Prototyping Hydraulic Physical InterfacesTakafumi Morita, Yu Kuwajima, Ayato Minaminosono, Shingo Maeda et al.CHI 2022 · 28 citations
- PhysioSkin: Rapid Fabrication of Skin-Conformal Physiological InterfacesAditya Shekhar Nittala, Arshad Khan, Klaus Kruttwig, Tobias Kraus et al.CHI 2020 · 71 citations
