Hybrid Fabrication of Prestrain‐Locked Acrylic Dielectric Elastomer Thin Films and Multilayer Stacks

Author:

Han Ziqing1,Peng Zihang1,Guo Yuxuan1,Wang Huiying1,Plamthottam Roshan1,Pei Qibing1

Affiliation:

1. Soft Materials Research Laboratory, Department of Materials Science and Engineering University of California, Los Angeles 420 Westwood Plaza Los Angeles CA 90095 USA

Abstract

AbstractDielectric elastomers based on commercial acrylic dielectric elastomers (VHB adhesive films) are widely investigated for soft actuators due to their large electrically driven actuation strain and high work density. However, the VHB films require prestretching to overcome electromechanical instability, which adds fabrication complexity. In addition, their high viscoelasticity leads to a low response speed. Interpenetrated polymer networks (IPNs) are developed to lock the prestrain in VHB films, resulting in free‐standing films that are capable of large‐strain actuation. In this work, a prestrain‐locked high‐performance dielectric elastomer thin film (VHB‐IPN‐P) by introducing 1,6‐hexanediol diacrylate to create an IPN in the VHB network and a plasticizer to enhance the actuation speed is reported. VHB‐IPN‐P based actuators exhibit stable actuation at 60% strain up to 10 Hz and reach a peak energy density of 102 J kg⁻1. In addition, a hybrid process is also developed for the fabrication of multilayer stacks of VHB‐IPN‐P with strong inter‐layer bonding and structural integrity. Four‐layer stacks fabricated preserve the strain and energy density of single‐layer VHB‐IPN‐P films but with linearly scaled force and work output.

Publisher

Wiley

Subject

Materials Chemistry,Polymers and Plastics,Organic Chemistry

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. 介电弹性体材料及其驱动器多层堆叠工艺研究进展;Journal of Zhejiang University-SCIENCE A;2024-01-10

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