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Voltage-Induced Wrinkle Performance in a Hydrogel by Dielectric Elastomer Actuation.


ABSTRACT: Hydrogel is a type of soft smart material and is responsive to stimuli. In the development of actuation in hydrogel, electrical actuation features a fast and universal strategy which is favored in the engineering system. Due to the difficulty in direct electrical actuation in hydrogel, in this study, an indirect actuation was attained via a dielectric elastomer. An aligned wrinkle pattern was obtained in the hydrogel upon a direct-current voltage, and it is reversible. The morphology and nonlinear mechanics of the electro-wrinkling deformation was characterized and analyzed. The optical property of the wrinkle in hydrogel was investigated, demonstrating a tunable blurring effect in optics. The electro-wrinkling performance offers a potential application with soft and tunable optical property in hydrogel-based actuators.

SUBMITTER: Tang C 

PROVIDER: S-EPMC6404066 | biostudies-literature | 2018 Jun

REPOSITORIES: biostudies-literature

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Voltage-Induced Wrinkle Performance in a Hydrogel by Dielectric Elastomer Actuation.

Tang Chao C   Li Bo B   Zou Chenbang C   Liu Lei L   Chen Hualing H  

Polymers 20180622 7


Hydrogel is a type of soft smart material and is responsive to stimuli. In the development of actuation in hydrogel, electrical actuation features a fast and universal strategy which is favored in the engineering system. Due to the difficulty in direct electrical actuation in hydrogel, in this study, an indirect actuation was attained via a dielectric elastomer. An aligned wrinkle pattern was obtained in the hydrogel upon a direct-current voltage, and it is reversible. The morphology and nonline  ...[more]

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