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Crack Detection Using Embedded Fiber-Optic Sensors in Reinforced Concrete Beams

机译:使用嵌入式光纤传感器检测钢筋混凝土梁中的裂缝

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Reinforced concrete structural components such as beams are subject during their service life to different loading conditions that may affect their durability and efficiency. This can reduce the safety level of the structure over time until it degrades completely and reaches its ultimate limit state. In particular, cracking conditions due to tensile conditions can be developed leading to the exposure of the steel reinforcements to the aggression of external agents, such as chlorides. Being able to monitor the development and the evolution of cracking is crucial and this research is aimed at this purpose. In particular, laboratory tests have been performed on reinforced concrete beams equipped with distributed fiber optics sensors to monitor the state of cracking. This technology has been selected because its inherent accuracy and low noise. Furthermore, since technology relies of optical signals, the sensors are not affected by electrical and magnetic noise. They are also resistant to high temperatures and chemically reactive environments. The main objectives of the presented first part of this research are focused on the deformation and temperature assessment after concrete pouring, crack detection, localization and opening quantification.
机译:钢筋混凝土结构部件(例如,梁)在使用寿命期间会受到不同的载荷条件的影响,这些条件可能会影响其耐久性和效率。随着时间的流逝,这可能会降低结构的安全级别,直到结构完全降解并达到其最终极限状态。特别地,由于拉伸条件而产生的破裂条件会导致钢增强材料暴露于外部因素例如氯化物的侵蚀下。能够监控裂纹的发展和演变至关重要,这项研究就是针对这一目的。特别是,已经对配备有分布式光纤传感器以监测裂缝状态的钢筋混凝土梁进行了实验室测试。选择该技术是因为其固有的准确性和低噪声。此外,由于技术依赖于光信号,因此传感器不受电磁噪声的影响。它们还耐高温和化学反应环境。本研究的第一部分的主要目标集中在混凝土浇筑后的变形和温度评估,裂缝检测,局部化和开孔定量化之后。

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