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Fibre-reinforced polymer strengthening and fibre Bragg grating-based monitoring of reinforced concrete cantilever slabs with insufficient anchorage length of steel bars

机译:钢筋锚固长度不足的钢筋混凝土悬臂楼板的纤维增强聚合物增强和基于光纤布拉格光栅的监测

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Reinforced concrete cantilever slabs are among structures that are most likely to develop structural integrity problems, as they are statically determinate and often exposed to the outdoor environment. This article presents an experimental study on the strengthening of reinforced concrete cantilever slabs where the anchorage of the top steel reinforcing bars into the adjacent wall was insufficient. The experimental study involved the use of a fibre-reinforced polymer strengthening system and fibre Bragg grating sensors for strain monitoring. The fibre-reinforced polymer strengthening system consisted of glass fibre-reinforced polymer sheets and glass fibre-reinforced polymer spike anchors which connected the glass fibre-reinforced polymer sheets to the adjacent concrete wall. The test results showed that the fibre-reinforced polymer strengthening system was effective in improving the load-carrying capacity of reinforced concrete cantilever slabs and the fibre Bragg grating sensors worked efficiently and reliably for strain monitoring. The debonding in glass fibre-reinforced polymer sheet/glass fibre-reinforced polymer anchor-to-concrete bonded joints was found to be a progressive process associated with an increasing load. The fibre-reinforced polymer strengthening system examined in this study is thus a potential ductile solution for deficient cantilever slabs.
机译:钢筋混凝土悬臂楼板是最有可能出现结构完整性问题的结构,因为它们是静态确定的,并且经常暴露在室外环境中。本文提出了对钢筋混凝土悬臂楼板进行加固的实验研究,其中顶部钢筋的锚固不足。实验研究涉及使用纤维增强的聚合物增强系统和光纤布拉格光栅传感器进行应变监测。纤维增强的聚合物增强系统由玻璃纤维增​​强的聚合物片和玻璃纤维增​​强的聚合物钉锚组成,它们将玻璃纤维增​​强的聚合物片连接到相邻的混凝土墙。测试结果表明,纤维增强的聚合物增强系统可以有效地提高钢筋混凝土悬臂楼板的承载能力,并且光纤布拉格光栅传感器可以有效且可靠地用于应变监测。发现玻璃纤维增​​强的聚合物片/玻璃纤维增​​强的聚合物锚固至混凝土的粘结连接处的剥离是与载荷增加相关的渐进过程。因此,本研究中研究的纤维增强聚合物增强系统是悬臂梁不足的潜在延性解决方案。

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