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Experimental Evaluation of a Low-Cost RFID-Based Sensor to Crack Propagation

机译:基于低成本RFID传感器的裂纹扩展的实验评估

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摘要

A passive radio frequency identification (RFID)-based crack sensor was developed and its sensitivity to crack propagation on metallic plates has been experimentally validated. A crack propagation test method was designed to evaluate any backscatter power-based crack sensor to monitor propagating cracks on a metallic surface. This new method uses plate specimens designed for standard fracture toughness testing. Systematic increases in displacement with a hydraulic universal test machine to propagate the crack were performed. Using digital imagery, the physical characteristics of the crack and fracture mode were determined with high precision. Linear elastic fracture was induced so as to more closely resemble the fracture mode that is to be expected in high strength steel bridge girders. The sensor was tested as a single unit and in various arrays of multiple units for increased pervasiveness in monitoring. A piecewise relationship between the damage index and crack opening was found. This relationship is a significant finding that demonstrates that RFID-based crack sensing is a feasible tool for bridge inspection.
机译:开发了基于无源射频识别(RFID)的裂纹传感器,并已通过实验验证了其对金属板上裂纹扩展的敏感性。设计了一种裂纹扩展测试方法,以评估任何基于反向散射功率的裂纹传感器,以监控金属表面上正在传播的裂纹。这种新方法使用专为标准断裂韧性测试设计的板材样本。用液压万能试验机系统地增加位移以传播裂纹。使用数字图像,可以高精度地确定裂纹和断裂模式的物理特征。诱发了线性弹性断裂,以使其更类似于高强度钢桥大梁所预期的断裂模式。传感器作为单个单元进行测试,并以多个单元的各种阵列形式进行测试,以提高监控的普及性。发现损伤指数与裂缝开度之间存在分段关系。这种关系是一个重要发现,证明基于RFID的裂缝检测是桥梁检查的可行工具。

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