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Strain Measurement Using Embedded Fiber Bragg Grating Sensors Inside an Anchored Carbon Fiber Polymer Reinforcement Prestressing Rod for Structural Monitoring

机译:嵌入式光纤布拉格光栅传感器内部应变测量用于结构监测的锚固碳纤维聚合物增强预应力杆

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摘要

Results are reported from a study carried out using a series of Bragg grating based optical fiber sensors written into a very short length (60mm) optical fiber net work and integrated into carbon fiber polymer reinforcement (CFPR) rod. Such rods are used as reinforcements in concrete structures and intests were subjected to strain through a series of cycles of pulling tests, with applied forces of upto 30kN. The results show that effective strain measurements can be obtained from the different sensors mounted along the rod. Additionally, the tests show that close agreement with the results obtained from the calibrated force applied by the pulling machine and from a conventional resistive strain gauge mounted on the rod itself is obtained. Calculations from strain to shear stress show a relatively uniform stress distribution along the bar anchor used. The results give confidence to results from various methods of insitu monitoring of strains on such CFRP rods when used in different engineering structures.
机译:使用一系列基于布拉格光栅的光纤传感器进行的一项研究报告了结果,该传感器写入了很短的长度(60mm)的光纤网络中,并集成到碳纤维聚合物增强(CFPR)杆中。这种棒用作混凝土结构中的增强材料,并且通过一系列拉力测试循环使测试经受应变,施加的最大力为30kN。结果表明,可以从沿杆安装的不同传感器获得有效的应变测量值。此外,测试表明,与拉拔机施加的校准力以及安装在拉杆上的常规电阻应变仪获得的结果非常吻合。从应变到剪切应力的计算表明,沿所使用的钢筋锚固应力分布相对均匀。这些结果使人们对在不同的工程结构中使用这种CFRP杆上的应变进行现场监测的各种方法的结果充满信心。

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