材料科学
电容感应
弹性体
电容器
电介质
3D打印
纳米技术
纳米尺度
执行机构
计算机科学
测距
光电子学
电气工程
电压
复合材料
电信
工程类
人工智能
操作系统
作者
Wenbo Pang,Xu Cheng,Haojie Zhao,Xiaogang Guo,Ziyao Ji,Guorui Li,Yiming Liang,Zhaoguo Xue,Honglie Song,Fan Zhang,Zheng Xu,Lei Sang,Wen Huang,Tiefeng Li,Yihui Zhang
摘要
The manufacture of 3D mesostructures is receiving rapidly increasing attention, because of the fundamental significance and practical applications across wide-ranging areas. The recently developed approach of buckling-guided assembly allows deterministic formation of complex 3D mesostructures in a broad set of functional materials, with feature sizes spanning nanoscale to centimeter-scale. Previous studies mostly exploited mechanically controlled assembly platforms using elastomer substrates, which limits the capabilities to achieve on-demand local assembly, and to reshape assembled mesostructures into distinct 3D configurations. This work introduces a set of design concepts and assembly strategies to utilize dielectric elastomer actuators as powerful platforms for the electro-mechanically controlled 3D assembly. Capabilities of sequential, local loading with desired strain distributions allow access to precisely tailored 3D mesostructures that can be reshaped into distinct geometries, as demonstrated by experimental and theoretical studies of ∼30 examples. A reconfigurable inductive-capacitive radio-frequency circuit consisting of morphable 3D capacitors serves as an application example.
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