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Application of a Novel Long-Gauge Fiber Bragg Grating Sensor for Corrosion Detection via a Two-level Strategy

机译:新型长距离光纤光栅传感器的两级策略在腐蚀检测中的应用

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摘要

Corrosion of main steel reinforcement is one of the most significant causes of structural deterioration and durability reduction. This research proposes a two-level detection strategy to locate and quantify corrosion damage via a new kind of long-gauge fiber Bragg grating (FBG) sensor. Compared with the traditional point strain gauges, this new sensor has been developed for both local and global structural monitoring by measuring the averaged strain within a long gauge length. Based on the dynamic macrostrain responses of FBG sensors, the strain flexibility of structures are identified for corrosion locating (Level 1), and then the corrosion is quantified (Level 2) in terms of reduction of sectional stiffness of reinforcement through the sensitivity analysis of strain flexibility. The two-level strategy has the merit of reducing the number of unknown structural parameters through corrosion damage location (Level 1), which guarantees that the corrosion quantification (Level 2) can be performed efficiently in a reduced domain. Both numerical and experimental examples have been studied to reveal the ability of distributed long-gauge FBG sensors for corrosion localization and quantification.
机译:主要钢筋的腐蚀是导致结构劣化和耐久性降低的最重要原因之一。这项研究提出了一种两级检测策略,通过一种新型的长规格光纤布拉格光栅(FBG)传感器来定位和量化腐蚀损伤。与传统的点应变仪相比,该新型传感器已通过测量长应变片内的平均应变而开发用于局部和全局结构监测。根据FBG传感器的动态大应变响应,确定结构的应变柔性以进行腐蚀定位(级别1),然后根据应变敏感性分析,通过减小钢筋的截面刚度来量化腐蚀(级别2)。灵活性。二级策略的优点是可以通过腐蚀破坏位置(级别1)减少未知结构参数的数量,从而确保可以在缩小的范围内有效地执行腐蚀量化(级别2)。研究了数值和实验示例,以揭示分布式长规格FBG传感器进行腐蚀定位和量化的能力。

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