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Distributed Long-Gauge Optical Fiber Sensors Based Self-Sensing FRP Bar for Concrete Structure

机译:基于分布式长距离光纤传感器的混凝土结构自感玻璃钢条

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Brillouin scattering-based distributed optical fiber (OF) sensing technique presents advantages for concrete structure monitoring. However, the existence of spatial resolution greatly decreases strain measurement accuracy especially around cracks. Meanwhile, the brittle feature of OF also hinders its further application. In this paper, the distributed OF sensor was firstly proposed as long-gauge sensor to improve strain measurement accuracy. Then, a new type of self-sensing fiber reinforced polymer (FRP) bar was developed by embedding the packaged long-gauge OF sensors into FRP bar, followed by experimental studies on strain sensing, temperature sensing and basic mechanical properties. The results confirmed the superior strain sensing properties, namely satisfied accuracy, repeatability and linearity, as well as excellent mechanical performance. At the same time, the temperature sensing property was not influenced by the long-gauge package, making temperature compensation easy. Furthermore, the bonding performance between self-sensing FRP bar and concrete was investigated to study its influence on the sensing. Lastly, the sensing performance was further verified with static experiments of concrete beam reinforced with the proposed self-sensing FRP bar. Therefore, the self-sensing FRP bar has potential applications for long-term structural health monitoring (SHM) as embedded sensors as well as reinforcing materials for concrete structures.
机译:基于布里渊散射的分布式光纤(OF)传感技术为混凝土结构监测提供了优势。但是,空间分辨率的存在极大地降低了应变测量的准确性,尤其是在裂纹周围。同时,OF的脆性特征也阻碍了其进一步的应用。本文首先提出了分布式OF传感器作为长距传感器,以提高应变测量的精度。然后,通过将包装好的长规格OF传感器嵌入到FRP条中,开发了一种新型的自感应纤维增强聚合物(FRP)条,然后进行了应变传感,温度传感和基本机械性能的实验研究。结果证实了优异的应变感测性能,即令人满意的精度,可重复性和线性以及出色的机械性能。同时,温度感应特性不受长规格封装的影响,从而使温度补偿变得容易。此外,还研究了自感应FRP钢筋与混凝土之间的粘结性能,以研究其对传感的影响。最后,通过使用建议的自感应FRP筋增强混凝土梁的静态实验,进一步验证了感应性能。因此,自感FRP棒作为嵌入式传感器以及混凝土结构的增强材料,在长期结构健康监测(SHM)中具有潜在的应用。

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