Lower‐Voltage‐Driven Deformable Soft Electrothermal Actuators with Embedded Liquid Metal EGaIn

Author:

Zhang Zhengyan12,Bu Fan1,Cheng E.1ORCID,Yang Chao13,Zhang Zhansheng1,Hu Ning14

Affiliation:

1. School of Mechanical Engineering Hebei University of Technology Tianjin 300401 P. R. China

2. School of Mechanical Engineering National Engineering Research Center for Technological Innovation Method and Tool Hebei University of Technology Tianjin 300401 P. R. China

3. Key Laboratory of Hebei Province on Scale-span Intelligent Equipment Technology Hebei University of Technology Tianjin 300401 P. R. China

4. State Key Laboratory of Reliability and Intelligence Electrical Equipment Hebei University of Technology Tianjin 300130 P. R. China

Abstract

In recent years, soft electrothermal actuators (ETAs) with low voltage drives have been applied in the field of human‐machine interface (iHMI) because of their safety and low power consumption. However, great challenges remain for achieving high‐performance, low‐cost and low‐voltage ETAs manufacturing. Herein, an ETA embedded with a conductive circuit fabricated using the liquid metal of eutectic gallium‐indium alloy (EGaIn), was developed using the 3D printing technology. Resistance stability, transmittance (92.1%), and heat generation capacity (246 °C at 1.484 V) of the ETAs were investigated to evaluate its performance. when the thickness ratio is 10:1, and the length‐width is 8:1, the ETA with U‐shaped conductive circuit structures shows higher bending performance. Three different categories of deformative structures (S‐shaped, flower‐shaped, and bridge‐shaped) were designed via planning the PI position of ETAs to investigate the deformation possibility of multiple structural deformations of ETA. Finally, a flexible smart gripper consisting of five ETAs was developed to demonstrate its potential application. Our study demonstrates that the developed ETA has high heat production capacity, high resistance stability and excellent bending performance at low voltage drives.

Funder

Natural Science Foundation of Hebei Province

National Natural Science Foundation of China

Publisher

Wiley

Subject

Condensed Matter Physics,General Materials Science

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. Ternary Liquid Metal Polymer Composite for Stretchable Electronics;Advanced Materials Technologies;2023-12-15

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