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首页> 外文期刊>Measurement >Investigation of measurability and reliability of adhesive-bonded built-in fiber Bragg grating sensors on steel wire for bridge cable force monitoring
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Investigation of measurability and reliability of adhesive-bonded built-in fiber Bragg grating sensors on steel wire for bridge cable force monitoring

机译:桥梁电缆力监测钢丝钢丝纤维纤维布拉格光栅传感器可测量和可靠性研究

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摘要

The embedding method of fiber Bragg grating sensors (FBGs) has a significant impact on the measurability and reliability, as a result of the monitoring of FBGs depending on the strain transmission from the measured object. In this study, structural adhesive was used to join the FBGs with steel wire, and the relevant measurability and reliability of the adhesive-bonded FBGs with steel wire were investigated by loading & unloading cyclic test and fatigue test in the application of FBGs to monitor bridge cable force. It was found that there was a linear relationship between the load and the wavelength for both the loading and the unloading phases, and the data line from the loading process was parallel to that of the unloading process. In addition, 200 million fatigue cycles of steel wire decreased slightly the wavelength of FBGs when the steel wire was applied the same load. The differences in load vs. wavelength between loading and unloading phases, and with and without fatigue tests were likely attributed by the mechanical properties of steel wire, namely, the load-displacement curves of steel wire were responsible for the change in load vs. wavelength. Nevertheless, our experimental results indicated that the FBGs bonded steel wire using structural adhesive had an exemplary measurability and reliability, which will find more application in monitoring bridge cables.
机译:由于根据从测量物体的应变传输监测FBG,光纤布拉格光栅传感器(FBGS)的嵌入方法对可测量和可靠性产生了显着影响。在该研究中,通过载入和卸载FBG在应用FBGS监测桥的循环试验和疲劳试验中,研究了结构粘合剂,用钢丝加入FBG粘合的FBG与钢丝的相关可测量和可靠性,并在循环试验和疲劳试验中进行循环试验来监测桥梁电缆力。结果发现,负载和卸载阶段的负载和波长之间存在线性关系,并且来自加载过程的数据线与卸载过程的数据线平行。此外,当钢丝施加相同的载荷时,钢丝的波长波长的波长略微降低了2亿疲劳循环。负载和卸载相之间的负载与波长的差异,并且在钢丝的机械性能下可能归因于钢丝的机械性能,即钢丝的负载 - 位移曲线负责负载与波长的变化。然而,我们的实验结果表明,使用结构粘合剂的FBGS粘合钢丝具有示例性可测量和可靠性,这将在监测桥电缆中找到更多的应用。

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