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Hybrid optical-fibre/geopolymer sensors for structural health monitoring of concrete structures

机译:混合光纤/地聚合物传感器,用于混凝土结构的结构健康监测

摘要

In this work, we demonstrate hybrid optical-fibre/geopolymer sensors for monitoring temperature, uniaxial strain and biaxial strain in concrete structures. The hybrid sensors detect these measurands via changes in geopolymer electrical impedance, and via optical wavelength measurements of embedded fibre Bragg gratings. Electrical and optical measurements were both facilitated by metal-coated optical fibres, which provided the hybrid sensors with a single, shared physical path for both voltage and wavelength signals. The embedded fibre sensors revealed that geopolymer specimens undergo 2.7 mepsilon of shrinkage after one week of curing at 42 °C. After curing, an axial 2 mepsilon compression of the uniaxial hybrid sensor led to impedance and wavelength shifts of 7 × 10−2 and −2 × 10−4 respectively. The typical strain resolution in the uniaxial sensor was 100 $mu arepsilon $. The biaxial sensor was applied to the side of a concrete cylinder, which was then placed under 0.6 mepsilon of axial, compressive strain. Fractional shifts in impedance and wavelength, used to monitor axial and circumferential strain, were 3 × 10−2 and 4 × 10−5 respectively. The biaxial sensor's strain resolution was approximately 10 $mu arepsilon $ in both directions. Due to several design flaws, the uniaxial hybrid sensor was unable to accurately measure ambient temperature changes. The biaxial sensor, however, successfully monitored local temperature changes with 0.5 °C resolution.
机译:在这项工作中,我们演示了混合光纤/地质聚合物传感器,用于监测混凝土结构中的温度,单轴应变和双轴应变。混合传感器通过地质聚合物电阻抗的变化以及嵌入式光纤布拉格光栅的光学波长测量来检测这些被测量物。金属涂层的光纤促进了电学和光学测量,这为混合传感器提供了电压,波长信号的单一共享物理路径。嵌入式纤维传感器显示,在42°C固化1周后,地聚合物样品经历了2.7兆帕的收缩。固化后,单轴混合传感器的轴向2 mepsilon压缩分别导致了7×10-2和-2×10-4的阻抗和波长偏移。单轴传感器中的典型应变分辨率为100μm/ varepsilon $。将双轴传感器应用于混凝土圆柱体的侧面,然后将其置于0.6兆帕的轴向压缩应变下。用于监测轴向和周向应变的阻抗和波长的分数位移分别为3×10-2和4×10-5。双轴传感器在两个方向上的应变分辨率约为10μmvarepsilon $。由于一些设计缺陷,单轴混合传感器无法准确测量环境温度变化。但是,双轴传感器以0.5°C的分辨率成功地监控了局部温度变化。

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