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Application of smart BFRP bars with distributed fiber optic sensors into concrete structures

机译:带有分布式光纤传感器的智能BFRP钢筋在混凝土结构中的应用

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In this paper, the self-sensing and mechanical properties of concrete structures strengthened with a novel type of smart basalt fiber reinforced polymer (BFRP) bars were experimentally studied, wherein the sensing element is Brillouin scattering-based distributed optical fiber sensing technique. First, one of the smart bars was applied to strengthen a 2m concrete beam under a 4-points static loading manner in the laboratory. During the experiment, the bar can measure the inner strain changes and monitor the randomly distributed cracks well. With the distributed strain information along the bar, the distributed deformation of the beam can be calculated, and the structural health can be monitored and evaluated as well. Then, two smart bars with a length of about 70m were embedded into a concrete airfield pavement reinforced by long BFRP bars. In the field test, all the optical fiber sensors in the smart bars survived the whole concrete casting process and worked well. From the measured data, the concrete cracks along the pavement length can be easily monitored. The experimental results also confirmed that the bars can strengthen the structures especially after the yielding of steel bars. All the results confirm that this new type of smart BFRP bars show not only good sensing performance but also mechanical performance in the concrete structures.
机译:本文研究了一种新型的智能玄武岩纤维增强聚合物(BFRP)钢筋增强的混凝土结构的自感和力学性能,其中传感元件是基于布里渊散射的分布式光纤传感技术。首先,在实验室中,使用一根智能钢筋以4点静态载荷的方式来加固2m混凝土梁。在实验过程中,钢筋可以测量内部应变变化并很好地监测随机分布的裂纹。利用沿钢筋分布的应变信息,可以计算梁的分布变形,并且还可以监视和评估结构的健康状况。然后,将两条长约70m的智能杆嵌入到由长BFRP杆加固的混凝土飞机场路面中。在现场测试中,智能棒中的所有光纤传感器在整个混凝土浇铸过程中均能幸存,并且运行良好。根据测量数据,可以轻松监控沿路面长度的混凝土裂缝。实验结果还证实,钢筋可以增强结构,特别是在屈服钢筋之后。所有结果证实,这种新型的智能BFRP钢筋不仅显示出良好的感测性能,而且还显示出混凝土结构中的机械性能。

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