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一种基于改性石墨/聚氨酯复合薄膜制备可穿戴压阻式压力传感器的新方法。

A Novel Method for Fabricating Wearable, Piezoresistive, and Pressure Sensors Based on Modified-Graphite/Polyurethane Composite Films.

作者信息

He Yin, Li Wei, Yang Guilin, Liu Hao, Lu Junyu, Zheng Tongtong, Li Xiaojiu

机构信息

School of Textiles, Tianjin Polytechnic University, Tianjin 300387, China.

Institute of Smart Wearable Electronic Textiles, Tianjin Polytechnic University, Tianjin 300387, China.

出版信息

Materials (Basel). 2017 Jun 22;10(7):684. doi: 10.3390/ma10070684.

Abstract

A wearable, low-cost, highly repeatable piezoresistive sensor was fabricated by the synthesis of modified-graphite and polyurethane (PU) composites and polydimethylsiloxane (PDMS). Graphite sheets functionalized by using a silane coupling agent (KH550) were distributed in PU/,-dimethylformamide (DMF) solution, which were then molded to modified-graphite/PU (MG/PU) composite films. Experimental results show that with increasing modified-graphite content, the tensile strength of the MG/PU films first increased and then decreased, and the elongation at break of the composite films showed a decreasing trend. The electrical conductivity of the composite films can be influenced by filler modification and concentration, and the percolation threshold of MG/PU was 28.03 wt %. Under liner uniaxial compression, the 30 wt % MG/PU composite films exhibited 0.274 kPa piezoresistive sensitivity within the range of low pressure, and possessed better stability and hysteresis. The flexible MG/PU composite piezoresistive sensors have great potential for body motion, wearable devices for human healthcare, and garment pressure testing.

摘要

通过合成改性石墨与聚氨酯(PU)复合材料以及聚二甲基硅氧烷(PDMS),制备了一种可穿戴、低成本、高重复性的压阻传感器。使用硅烷偶联剂(KH550)功能化的石墨片分布在PU/N,N-二甲基甲酰胺(DMF)溶液中,然后模塑成改性石墨/PU(MG/PU)复合薄膜。实验结果表明,随着改性石墨含量的增加,MG/PU薄膜的拉伸强度先增大后减小,复合薄膜的断裂伸长率呈下降趋势。复合薄膜的电导率受填料改性和浓度的影响,MG/PU的渗流阈值为28.03 wt%。在线性单轴压缩下,30 wt%的MG/PU复合薄膜在低压范围内表现出0.274 kPa的压阻灵敏度,并且具有较好的稳定性和滞后性。柔性MG/PU复合压阻传感器在人体运动、人体健康可穿戴设备以及服装压力测试方面具有巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7eff/5551727/a879cd15fb87/materials-10-00684-g001.jpg

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