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Fatigue performance monitoring of full-scale PPC beams by using the FBG sensors

机译:使用FBG传感器监测全尺寸PPC梁的疲劳性能

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摘要

When subjected to fatigue loading, the main failure mode of partially prestressed concrete (PPC) structure is the fatigue fracture of tensile reinforcement. Therefore, monitoring and evaluation of the steel stresses/strains in the structure are essential issues for structural design and healthy assessment. The current study experimentally investigates the possibility of using fiber Bragg grating (FBG) sensors to measure the steel strains in PPC beams in the process of fatigue loading. Six full-scale post-tensioned PPC beams were exposed to fatigue loading. Within the beams, the FBG and resistance strain gauge (RSG) sensors were independently bonded onto the surface of tensile reinforcements. A good agreement was found between the recorded results from the two different sensors. Moreover, FBG sensors show relatively good resistance to fatigue loading compared with RSG sensors, indicating that FBG sensors possess the capability for long-term health monitoring of the tensile reinforcement in PPC structures. Apart from the above findings, it can also be found that during the fatigue loading, there is stress redistribution between prestressed and non-prestressed reinforcements, and the residual strain emerges in the non-prestressed reinforcement. This phenomenon can bring about an increase of the steel stress in the non-prestressed reinforcement.
机译:在承受疲劳载荷时,部分预应力混凝土(PPC)结构的主要破坏模式是抗拉钢筋的疲劳断裂。因此,监视和评估结构中的钢应力/应变对于结构设计和健康评估至关重要。当前的研究通过实验研究了在疲劳载荷过程中使用光纤布拉格光栅(FBG)传感器测量PPC梁中钢应变的可能性。六个完整的后张预应力PPC梁承受疲劳载荷。在梁内,FBG和电阻应变仪(RSG)传感器独立地粘合到抗拉钢筋的表面上。在两个不同传感器的记录结果之间发现了很好的一致性。此外,与RSG传感器相比,FBG传感器对疲劳载荷具有相对较好的抵抗力,这表明FBG传感器具有对PPC结构中的拉伸钢筋进行长期健康监测的能力。除上述发现外,还可以发现,在疲劳载荷过程中,预应力和非预应力钢筋之间存在应力重新分布,并且残余应力出现在非预应力钢筋中。这种现象会导致非预应力钢筋中的钢应力增加。

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