材料科学
弹性体
执行机构
介电弹性体
电活性聚合物
电介质
复合材料
电极
聚氨酯
平面的
3D打印
固化(化学)
导电体
热塑性聚氨酯
聚合物
光电子学
电气工程
化学
计算机图形学(图像)
物理化学
计算机科学
工程类
作者
Alex Chortos,Ehsan Hajiesmaili,Javier M. Morales,David R. Clarke,Jennifer A. Lewis
标识
DOI:10.1002/adfm.201907375
摘要
Abstract Dielectric elastomer actuators (DEAs) are soft electromechanical devices that exhibit large energy densities and fast actuation rates. They are typically produced by planar methods and, thus, expand in‐plane when actuated. Here, reported is a method for fabricating 3D interdigitated DEAs that exhibit in‐plane contractile actuation modes. First, a conductive elastomer ink is created with the desired rheology needed for printing high‐fidelity, interdigitated electrodes. Upon curing, the electrodes are then encapsulated in a self‐healing dielectric matrix composed of a plasticized, chemically crosslinked polyurethane acrylate. 3D DEA devices are fabricated with tunable mechanical properties that exhibit breakdown fields of 25 V µm −1 and actuation strains of up to 9%. As exemplars, printed are prestrain‐free rotational actuators and multi‐voxel DEAs with orthogonal actuation directions in large‐area, out‐of‐plane motifs.
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