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Crack Monitoring Method for an FRP-Strengthened Steel Structure Based on an Antenna Sensor

机译:基于天线传感器的FRP加固钢结构裂缝监测方法

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摘要

Fiber-reinforced polymer (FRP) has been increasingly applied to steel structures for structural strengthening or crack repair, given its high strength-to-weight ratio and high stiffness-to-weight ratio. Cracks in steel structures are the dominant hidden threats to structural safety. However, it is difficult to monitor structural cracks under FRP coverage and there is little related research. In this paper, a crack monitoring method for an FRP-strengthened steel structure deploying a microstrip antenna sensor is presented. A theoretical model of the dual-substrate antenna sensor with FRP is established and the sensitivity of crack monitoring is studied. The effects of the weak conductivity of carbon fiber reinforced polymers (CFRPs) on the performance of crack monitoring are analyzed via contrast experiments. The effects of FRP thickness on the performance of the antenna sensor are studied. The influence of structural strain on crack detection coupling is studied through strain–crack coupling experiments. The results indicate that the antenna sensor can detect cracks in steel structures covered by FRP (including CFRP). FRP thickness affects the antenna sensor’s performance significantly, while the effects of strain can be ignored. The results provide a new approach for crack monitoring of FRP-strengthened steel structures with extensive application prospects.
机译:纤维增强聚合物(FRP)具有高的强度重量比和高的刚性重量比,因此已越来越多地应用于钢结构的结构加固或裂缝修复。钢结构裂缝是对结构安全性的主要隐性威胁。但是,在玻璃钢覆盖下难以监测结构裂缝,相关研究很少。本文提出了一种采用微带天线传感器的FRP加固钢结构裂缝监测方法。建立了带FRP的双基板天线传感器的理论模型,研究了裂纹监测的灵敏度。通过对比实验分析了碳纤维增强聚合物(CFRPs)的弱电导率对裂纹监测性能的影响。研究了玻璃钢厚度对天线传感器性能的影响。通过应变-裂纹耦合实验研究了结构应变对裂纹检测耦合的影响。结果表明,该天线传感器可以检测FRP(包括CFRP)覆盖的钢结构中的裂缝。 FRP的厚度会显着影响天线传感器的性能,而应变的影响可以忽略不计。研究结果为玻璃纤维增​​强钢结构的裂缝监测提供了一种新方法,具有广阔的应用前景。

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