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Structural health monitoring of a composite bridge using Bragg grating sensors. Part 1: Evaluation of adhesives and protection systems for the optical sensors

机译:使用布拉格光栅传感器的复合材料桥梁的结构健康监测。第1部分:光学传感器的粘合剂和保护系统的评估

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The present paper is part of a series of two concerning the structural health monitoring of a road bridge using optical fibre Bragg grating sensors. This bridge named the West Mill Bridge is entirely made of glass and carbon fibre composite materials. The use of Bragg grating sensors was made possible by the development of a bonding methodology and appropriate protection systems for the sensors. The optical sensors were successfully implemented on site and they all survived the construction and installation of the bridge. This first paper focuses on the evaluation of the adhesives and protection system of the sensors. Pullout tests on optical fibres bonded on bridge coupons by the selected adhesives were carried out to evaluate the influence of dry and wet conditions on the fibre bonding. Cyanoacrylate and epoxy adhesives were used in this study. The durability of the sensor protection system that was developed and implemented on the composite bridge was investigated by immersing protected optical sensors in water. The strain development on the sample surfaces during immersion was continuously monitored whereas the integrity of the sensor bonding line was evaluated by performing three-point bending tests at specific time intervals. The first study highlighted that failure mechanism and load of the fibres bonded on bridge coupons were not influenced by the environmental conditions, and that stress concentrations developed during curing of the epoxy adhesive were the reason for lower failure loads and altered failure mechanism. The second study demonstrated that the protection system isolated effectively the sensors from the water, and also that swelling of the bridge samples due to water absorption by the composite material was recorded.
机译:本文是有关使用光纤布拉格光栅传感器对路桥进行结构健康监测的一系列研究的两个部分。这座名为West Mill Bridge的桥完全由玻璃和碳纤维复合材料制成。通过开发结合方法和传感器的适当保护系统,使布拉格光栅传感器的使用成为可能。光学传感器已在现场成功实施,并且都在桥梁的建造和安装中幸存下来。第一篇论文重点介绍传感器的粘合剂和保护系统的评估。对通过选择的粘合剂粘结在桥状试样上的光纤进行了拉拔测试,以评估干燥和湿润条件对光纤粘结的影响。本研究中使用了氰基丙烯酸酯和环氧粘合剂。通过将受保护的光学传感器浸入水中,研究了在复合桥上开发并实施的传感器保护系统的耐久性。连续监测样品在浸入过程中的应变发展,同时通过在特定时间间隔执行三点弯曲测试来评估传感器结合线的完整性。第一项研究强调,粘结在桥式试片上的纤维的破坏机理和载荷不受环境条件的影响,而环氧胶固化过程中产生的应力集中是降低破坏载荷和改变破坏机理的原因。第二项研究表明,该保护系统有效地将传感器与水隔离,并且还记录了由于复合材料吸收水而导致的桥梁样品膨胀。

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