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用于柔性传感器的橡胶基碳纳米管复合材料的应变传感特性

Strain Sensing Characteristics of Rubbery Carbon Nanotube Composite for Flexible Sensors.

作者信息

Choi Gyong Rak, Park Hyung-ki, Huh Hoon, Kim Young-Ju, Ham Heon, Kim Hyoun Woo, Lim Kwon Taek, Kim Sung Yong, Kang Inpil

出版信息

J Nanosci Nanotechnol. 2016 Feb;16(2):1607-11. doi: 10.1166/jnn.2016.11978.

Abstract

In this study, the piezoresistive properties of CNT (Carbon Nanotube)/EPDM composite are characterized for the applications of a flexible sensor. The CNT/EPDM composites were prepared by using a Brabender mixer with MWCNT (Multi-walled Carbon Nanotube) and organoclay. The static and quasi-dynamic voltage output responses of the composite sensor were also experimentally studied and were compared with those of a conventional foil strain gage. The voltage output by using a signal processing system was fairly stable and it shows somehow linear responses at both of loading and unloading cases with hysteresis. The voltage output was distorted under a quasi-dynamic test due to its unsymmetrical piezoresistive characteristics. The CNT/EPDM sensor showed quite tardy response to its settling time test under static deflections and that would be a hurdle for its real time applications. Furthermore, since the CNT/EPDM sensor does not have directional voltage output to tension and compression, it only could be utilized as a mono-directional force sensor such as a compressive touch sensor.

摘要

在本研究中,对碳纳米管(CNT)/三元乙丙橡胶(EPDM)复合材料的压阻特性进行了表征,以用于柔性传感器。采用布拉本德密炼机,将多壁碳纳米管(MWCNT)与有机粘土混合制备了CNT/EPDM复合材料。还对复合传感器的静态和准动态电压输出响应进行了实验研究,并与传统箔式应变片进行了比较。使用信号处理系统输出的电压相当稳定,在加载和卸载情况下均呈现出一定程度的线性响应且存在滞后现象。由于其不对称的压阻特性,在准动态测试下电压输出会发生畸变。CNT/EPDM传感器在静态挠度下的稳定时间测试中响应相当迟缓,这将成为其实际应用的障碍。此外,由于CNT/EPDM传感器对拉伸和压缩没有定向电压输出,它仅能用作单方向力传感器,如压缩触摸传感器。

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