Nesser Hussein, Mahmoud Hassan A, Lubineau Gilles
Mechanical Engineering Program, Physical Sciences and Engineering Division, King Abdullah University of Science and Technology (KAUST), Physical Science and Engineering Division, Thuwal, 23955-6900, Saudi Arabia.
Mechanics of Composites for Energy and Mobility Laboratory, King Abdullah University of Science and Technology, Thuwal, 23955, Saudi Arabia.
Adv Sci (Weinh). 2023 Sep;10(26):e2301807. doi: 10.1002/advs.202301807. Epub 2023 Jul 5.
Structural health monitoring (SHM) is crucial for ensuring operational safety in applications like pipelines, tanks, aircraft, ships, and vehicles. Traditional embedded sensors have limitations due to expense and potential structural damage. A novel technology using radio frequency identification devices (RFID) offers wireless transmission of highly sensitive strain measurement data. The system features a thin, flexible sensor based on an inductance-capacitance (LC) circuit with a parallel-plate capacitance sensing unit. By incorporating tailored cracks in the capacitor electrodes, the sensor's capacitor electrodes become highly piezoresistive, modifying electromagnetic wave penetration. This unconventional change in capacitance shifts the resonance frequency, resulting in a wireless strain sensor with a gauge factor of 50 for strains under 1%. The frequency shift is passively detected through an external readout system using simple frequency sweeping. This wire-free, power-free design allows easy integration into composites without compromising structural integrity. Experimental results demonstrate the cracked wireless strain sensor's ability to detect small strains within composites. This technology offers a cost-effective, non-destructive solution for accurate structural health monitoring.
结构健康监测(SHM)对于确保管道、储罐、飞机、船舶和车辆等应用中的运行安全至关重要。传统的嵌入式传感器由于成本和潜在的结构损坏而存在局限性。一种使用射频识别设备(RFID)的新技术可实现高灵敏度应变测量数据的无线传输。该系统具有一个基于电感 - 电容(LC)电路的薄型柔性传感器,带有平行板电容传感单元。通过在电容器电极中引入定制裂缝,传感器的电容器电极变得具有高度压阻性,从而改变电磁波穿透。这种电容的非常规变化会使共振频率发生偏移,从而产生一种应变计因子为50的无线应变传感器,适用于1%以下的应变。通过使用简单的频率扫描,通过外部读出系统被动检测频率偏移。这种无需布线、无需供电的设计允许轻松集成到复合材料中,而不会损害结构完整性。实验结果表明,这种带有裂缝的无线应变传感器能够检测复合材料内部的小应变。该技术为精确的结构健康监测提供了一种经济高效的无损解决方案。