Multifunctional Soft Actuator Based on Dielectric Liquid with Simultaneous Luminance and Weight Lifting Capabilities

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초록

Soft robots require soft actuators for mobility and functionality. To integrate multiple functions in a limited space, researchers are developing multifunctional soft actuators with several functions integrated in one device. This study successfully demonstrates an electroluminescent (EL) soft actuator, a single device with both light-emitting and actuating capabilities, using liquid dielectric and uniformly dispersed EL phosphor particles. EL phosphor particles are copper-doped zinc sulfide (ZnS) particles doped with copper. The work is able to disperse the ZnS particles uniformly in the oil by coating the ZnS particles with silica, ensuring consistent luminescence across the device's active area. The performance of the soft actuator is notable, with a strain of 25% and a maximum EL intensity of 23 cd m(-2) for a single actuator. When stacking multiple actuators, the intensity exceeds 29 cd m(-2). The findings suggest that EL actuator devices will be valuable smart components for soft robots and interactive sensors. They can effectively represent external stimuli through color signals, expanding the capabilities of these systems. This study presents a multifunctional soft actuator combining luminance and actuation. Utilizing liquid dielectric and uniformly dispersed phosphor particles, the actuator achieves a 25% strain and an impressive electroluminescent (EL) intensity. These EL actuators can serve as compact and versatile components for soft robots and interactive sensors, effectively converting external stimuli to vibrant color signals.image

키워드

dielectric elastomer actuator; electroactive; electroluminescent device; phosphor; soft actuator; PHOTOLUMINESCENCE; NANOPARTICLES; DISPERSION
제목
Multifunctional Soft Actuator Based on Dielectric Liquid with Simultaneous Luminance and Weight Lifting Capabilities
저자
Han, Dong Jin; Kim, Hea Ji; Lee, Byung Yang
DOI
10.1002/mame.202300377
발행일
2024-01-18
유형
Article
저널명
Macromolecular Materials and Engineering
권
309
호
4