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首页> 外文期刊>International Journal of Distributed Sensor Networks >Experimental Investigation of a Self-Sensing Hybrid GFRP-Concrete Bridge Superstructure with Embedded FBG Sensors
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Experimental Investigation of a Self-Sensing Hybrid GFRP-Concrete Bridge Superstructure with Embedded FBG Sensors

机译:嵌入式FBG传感器自感混合GFRP混凝土桥梁上部结构的试验研究。

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摘要

A self-sensing hybrid GFRP-concrete bridge superstructure, which consists of two bridge decks and each bridge deck is comprised of four GFRP box sections combined with a thin layer of concrete in the compression zone, was developed by using eight embedded FBG sensors in the top and bottom flanges of the four GFRP box sections at midspan section of one bridge deck along longitudinal direction, respectively. The proposed self-sensing hybrid bridge superstructure was tested in 4-point loading to investigate its flexural behavior and verify the operation of the embedded FBG sensors. The longitudinal strains of the hybrid bridge superstructure were recorded using the embedded FBG sensors as well as the surface-bonded electric resistance strain gauges. The experimental results indicate that the embedded FBG sensors can faithfully record the longitudinal strains of the hybrid bridge superstructure in tension at bottom flanges and in compression at top flanges of the four GFRP box sections over the entire loading range, as compared with the surface-bonded strain gauges. So, the proposed self-sensing hybrid GFRP-concrete bridge superstructure can reveal its internal strains in serviceability limit state as well as in strength limit state, and it will have wide applications for long-term monitoring in civil engineering.
机译:通过使用八个嵌入式FBG传感器开发了一种自感式GFRP-混凝土混合桥梁上部结构,该结构由两个桥面板组成,每个桥面板由四个GFRP箱形截面和压缩区内的混凝土薄层组成。一个桥面板的中跨部分沿纵向分别位于四个GFRP箱形部分的顶部和底部凸缘。拟议的自感应混合桥上部结构在4点荷载下进行了测试,以研究其挠曲行为并验证嵌入式FBG传感器的运行。混合桥上部结构的纵向应变是使用嵌入式FBG传感器以及表面结合电阻应变仪记录的。实验结果表明,与表面粘结的相比,嵌入式FBG传感器可以忠实地记录混合桥上部结构在整个荷载范围内四个GFRP箱形截面的底部凸缘的拉力和顶部凸缘的压缩力的纵向应变。应变片。因此,所提出的自感应混合GFRP-混凝土桥梁上部结构可以揭示其在使用极限状态和强度极限状态下的内部应变,在土木工程的长期监测中具有广阔的应用前景。

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