Design and 3D Printing of Stretchable Conductor with High Dynamic Stability

Author:

Liu Chao123,Wang Yuwei23,Wang Shengding23,Xia Xiangling23ORCID,Xiao Huiyun23,Liu Jinyun23,Hu Siqi23,Yi Xiaohui23ORCID,Liu Yiwei23,Wu Yuanzhao23,Shang Jie23ORCID,Li Run-Wei4

Affiliation:

1. School of Materials Science and Chemical Engineering, Ningbo University, Ningbo 315211, China

2. CAS Key Laboratory of Magnetic Materials and Devices, Ningbo Institute of Materials Technology and Engineering, Chinese Academy of Sciences, Ningbo 315201, China

3. Zhejiang Province Key Laboratory of Magnetic Materials and Application Technology, Ningbo Institute of Materials Technology and Engineering, Chinese Academy of Sciences, Ningbo 315201, China

4. College of Materials Science and Opto-Electronic Technology, University of Chinese Academy of Sciences, Beijing 100049, China

Abstract

As an indispensable part of wearable devices and mechanical arms, stretchable conductors have received extensive attention in recent years. The design of a high-dynamic-stability, stretchable conductor is the key technology to ensure the normal transmission of electrical signals and electrical energy of wearable devices under large mechanical deformation, which has always been an important research topic domestically and abroad. In this paper, a stretchable conductor with a linear bunch structure is designed and prepared by combining numerical modeling and simulation with 3D printing technology. The stretchable conductor consists of a 3D-printed bunch-structured equiwall elastic insulating resin tube and internally filled free-deformable liquid metal. This conductor has a very high conductivity exceeding 104 S cm−1, good stretchability with an elongation at break exceeding 50%, and great tensile stability, with a relative change in resistance of only about 1% at 50% tensile strain. Finally, this paper demonstrates it as a headphone cable (transmitting electrical signals) and a mobile phone charging wire (transmitting electrical energy), which proves its good mechanical and electrical properties and shows good application potential.

Funder

National Natural Science Foundation of China

External Cooperation Program of the Chinese Academy of Sciences

Instrument Developing Project of the Chinese Academy of Sciences

K.C. Wong Education Foundation

Chinese Academy of Sciences Youth Innovation Promotion Association

“Pioneer” and “Leading Goose” R&D Program of Zhejiang

Zhejiang Provincial Key R&D Program

Natural Science Foundation of Zhejiang Province

Zhejiang Provincial Basic Public Welfare Research Project

Ningbo Scientific and Technological Innovation 2025 Major Project

Ningbo Natural Science Foundations

Publisher

MDPI AG

Subject

General Materials Science

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