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一种基于石墨烯/环氧树脂复合薄膜及丝网印刷工艺的柔性压力传感器。

A Flexible Pressure Sensor Based on Graphene/Epoxy Resin Composite Film and Screen Printing Process.

作者信息

Lin Qijing, Zhang Fuzheng, Xu Xiangyue, Yang Haolin, Mao Qi, Xian Dan, Yao Kun, Meng Qingzhi

机构信息

State Key Laboratory of Mechanical Manufacturing Systems Engineering, Xi'an Jiaotong University, Xi'an 710049, China.

School of Mechanical and Manufacturing Engineering, Xiamen Institute of Technology, Xiamen 361021, China.

出版信息

Nanomaterials (Basel). 2023 Sep 24;13(19):2630. doi: 10.3390/nano13192630.

Abstract

At present, flexible pressure-sensitive materials generally have problems with weak adhesion and poor wear resistance, which easily result in friction failure when used for plantar pressure detection. In this study, a flexible pressure sensor with the advantages of a wide detection range, fast recovery, and good abrasive resistance was designed and prepared based on the screen printing process. The pressure-sensitive unit with a structural size of 5 mm× 8 mm was a functional material system due to the use of graphene and epoxy resin. The influence of the different mass ratios of the graphene and epoxy resin on the sensing properties was also studied. The test results showed that when the mass ratio of graphene to epoxy resin was 1:4, the response time and recovery time of the sensing unit were 40.8 ms and 3.7 ms, respectively, and the pressure detection range was 2.5-500 kPa. The sensor can detect dynamic pressure at 0.5 Hz, 1 Hz, 2 Hz, 10 Hz, and 20 Hz and can withstand 11,000 cycles of bending. In addition, adhesion tests showed that the high viscosity of the epoxy helped to improve the interlayer bond between the pressure-sensitive materials and the flexible substrate, which makes it more suitable for plantar pressure detection environments, where friction is common.

摘要

目前,柔性压敏材料普遍存在附着力弱和耐磨性差的问题,在用于足底压力检测时容易导致摩擦失效。在本研究中,基于丝网印刷工艺设计并制备了一种具有检测范围宽、恢复快和耐磨性好等优点的柔性压力传感器。结构尺寸为5 mm×8 mm的压敏单元由于使用了石墨烯和环氧树脂而成为一种功能材料体系。还研究了石墨烯与环氧树脂不同质量比对传感性能的影响。测试结果表明,当石墨烯与环氧树脂的质量比为1:4时,传感单元的响应时间和恢复时间分别为40.8 ms和3.7 ms,压力检测范围为2.5 - 500 kPa。该传感器能够检测0.5 Hz、1 Hz、2 Hz、10 Hz和20 Hz的动态压力,并且能够承受11,000次弯曲循环。此外,附着力测试表明,环氧树脂的高粘度有助于改善压敏材料与柔性基板之间的层间结合,这使其更适合于摩擦常见的足底压力检测环境。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ecb4/10574549/ba0ff7e52e5c/nanomaterials-13-02630-g001.jpg

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