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Updated: Jun 9, 2025

Production of a Strain-Measuring Device with an Improved 3D Printer
Published on: January 30, 2020
Customized Preparation of Heat-Resistant Fully Flexible Sensors Based on Coaxial 3D Printing
Haoran Dong1,2, Qi Kong1,2, Saihua Jiang1,2
1Institute of Safety Science and Engineering, School of Mechanical and Automotive Engineering, South China University of Technology, Guangzhou 510641, P. R. China.
Abstract:
The conventional behavior recognition strategy for wearable sensors used in high-temperature environments typically requires an external power supply, and the manufacturing process is cumbersome. Herein, we present a rational design strategy based on fully flexible printable materials and a customized device-manufacturing process for skin-conformable triboelectric nanogenerator sensors. In detail, using high temperature-resistant ink and 3D printing technology to manufacture a coaxial triboelectric nanogenerator (C-TENG) sensor, the C-TENG exhibits high stretchability (>400%), a wide working range (>250 °C), and high output voltage (>100 V). The C-TENG can be worn on various parts of the human body, providing a robust skin-device interface that recognizes diverse human behaviors. Using machine learning algorithms, behaviors such as walking, running, sitting, squatting, climbing stairs, and falling can be identified, achieving 100% behavior recognition accuracy through the selective input and optimization of an appropriate dataset. This paper provides a research perspective for the customization, extension, and rapid fabrication of heat-resistant, fully flexible TENGs.

