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Structural Health Monitoring Using Textile Reinforcement Structures with Integrated Optical Fiber Sensors

机译:使用带有纤维传感器的纺织增强结构进行结构健康监测

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摘要

Optical fiber-based sensors " embedded " in functionalized carbon structures (FCSs) and textile net structures (TNSs) based on alkaline-resistant glass are introduced for the purpose of structural health monitoring (SHM) of concrete-based structures. The design aims to monitor common SHM parameters such as strain and cracks while at the same time acting as a structural strengthening mechanism. The sensor performances of the two systems are characterized in situ using Mach-Zehnder interferometric (MZI) and optical attenuation measurement techniques, respectively. For this purpose, different FCS samples were subjected to varying elongation using a tensile testing machine by carefully incrementing the applied force, and good correlation between the applied force and measured length change was observed. For crack detection, the functionalized TNSs were embedded into a concrete block which was then exposed to varying load using the three-point flexural test until destruction. Promising results were observed, identifying that the location of the crack can be determined using the conventional optical time domain reflectometry (OTDR) technique. The embedded sensors thus evaluated show the value of the dual achievement of the schemes proposed in obtaining strain/crack measurement while being utilized as strengthening agents as well.
机译:为了基于混凝土结构的结构健康监测(SHM),引入了“嵌入”在基于耐碱玻璃的功能化碳结构(FCS)和纺织网结构(TNS)中的基于光纤的传感器。该设计旨在监视常见的SHM参数,例如应变和裂缝,同时充当结构加固机制。分别使用Mach-Zehnder干涉测量(MZI)和光学衰减测量技术对两个系统的传感器性能进行现场表征。为此,使用拉力试验机通过小心地增加施加力,使不同的FCS样品经受不同的伸长,观察到施加力与测得的长度变化之间的良好相关性。对于裂缝检测,将功能化的TNS嵌入混凝土块中,然后使用三点弯曲试验对其施加不同的载荷,直至破坏。观察到有希望的结果,确定了可以使用常规的光学时域反射仪(OTDR)技术确定裂纹的位置。如此评估的嵌入式传感器显示了在获得应变/裂纹测量值的同时提出的方案的双重成就的价值,同时还被用作增强剂。

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