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SWCNT Thin Film Enabled Piezoresistive Sensors - Fabrication, Characterization and Application for Structural Health Monitoring for Polymeric Composites Structure

机译:SWCNT薄膜使能压阻式传感器 - 用于聚合物复合材料结构的结构健康监测的制造,表征和应用

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With the quantitative carbon nanotube dispersion characterization methods (preparative ultracentrifuge method (PUM) and dynamic light scattering (DLS)) and the spray-coating technique, the processing-structure-property relationships of single-wall carbon nanotube (SWCNT) thin film piezoresistive sensors were studied. It was found that the gauge factor of the sensors for a small tensile deformation (less than 2% strain) is close to unity and showed negligible dependence on the film thickness and SWCNT bundle length (L) and diameter (d). With incorporation of a small amount of conducting polymer - poly (3, 4-ethylenedioxythiophene)-poly (styrenesulfonate) (PEDOT: PSS) into SWCNT network, the SWCNT/PEDOT: PSS hybrid thin film sensor showed significantly improved gauge factor and electrical conductivity. The spray coating technique was further developed into a roll-to-roll process for continuously fabricating SWCNT thin film enabled fiber sensors. A promising application of the fiber sensor for real-time monitoring the curing process of epoxy resin has been demonstrated.
机译:具有定量碳纳米管分散表征方法(制备超速离心法(PUM)和动态光散射(DLS))和喷涂技术,单壁碳纳米管(SWCNT)薄膜压阻传感器的加工结构 - 性能关系研究过。结果发现,对于小拉伸变形(小于2%菌株)的传感器的量因子接近统一,并且显示对膜厚度和SWCNT束长度(L)和直径(D)的可忽略依赖性。通过掺入少量导电聚合物 - 聚(3,4-亚乙基噻吩)-poly(苯乙烯磺酸盐)(PEDOT:PSS)进入SWCNT网络,SWCNT / PEDOT:PSS混合薄膜传感器显示出显着提高的测量因子和导电性。喷涂技术进一步开发成用于连续制造SWCNT薄膜的光纤传感器的卷到辊卷工艺。已经证实了用于实时监测环氧树脂固化过程的光纤传感器的有望应用。

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