首页> 外文会议>ASME Conference on Smart Materials, Adaptive Structures and Intelligent Systems >DISTRIBUTED STRAIN SENSING USING CARBON NANOTUBE THIN FILMS AND ELECTRICAL TIME-DOMAIN REFLECTOMETRY
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DISTRIBUTED STRAIN SENSING USING CARBON NANOTUBE THIN FILMS AND ELECTRICAL TIME-DOMAIN REFLECTOMETRY

机译:使用碳纳米管薄膜和电时域反射测缝的分布式应变感测

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Nondestructive inspection (NDI) is an effective technique to inspect, test, or evaluate the integrity of materials, components, and structures without interrupting the serviceability of a system. Despite recent advances in NDI techniques, most of them are either limited to sensing structural response at their instrumented locations or require multiple sensors and measurements to localize damage. In this study, a new NDI system that could achieve distributed sensing using a single measurement was investigated. Here, piezoresistive carbon nanotube (CNT)-polymer thin film sensors connected in a transmission line setup were interrogated using electrical time-domain reflectometry (ETDR). In ETDR, an electromagnetic signal is sent from one end of the transmission line. When the signal encounters the sensor, it can partially reflect and be captured at the same point. The characteristics of the reflected signal depend on the sensor's impedance, which is correlated to structural response, deformation, or damage. The advantage of this is that distributed sensing along the entire transmission line can be achieved using a single measurement point. To validate this concept, CNT-polymer thin films that were integrated with a transmission line are subjected to uniaxial tensile strains applied using a load frame. The ETDR signals were analyzed to assess the system's sensing performance.
机译:无损检测(NDI)是一种有效的检查,测试或评估材料,组分和结构的完整性而不中断系统的可用性。尽管最近的NDI技术进步,但大多数是限于在其仪器位置感测结构响应,或者需要多个传感器和测量来定位损坏。在本研究中,研究了可以使用单一测量实现分布式感测的新的NDI系统。这里,使用电时域反射仪(ETDR)询问在传输线设置中连接的压阻碳纳米管(CNT) - 聚合物薄膜传感器。在ETDR中,从传输线的一端发送电磁信号。当信号遇到传感器时,它可以部分反映并在同一点捕获。反射信号的特性取决于传感器的阻抗,其与结构响应,变形或损坏相关。这样的优点是可以使用单个测量点来实现沿整个传输线的分布式感测。为了验证该概念,与输电线路集成的CNT-聚合物薄膜经受使用载荷框架施加的单轴拉伸菌株。分析ETDR信号以评估系统的传感性能。

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