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Use of high-speed camera for defect detection in FRP bonded system under different excitation methods

机译:高速相机在不同激发方式下玻璃钢粘结系统中缺陷检测中的应用

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Fiber reinforced polymers (FRP) strengthening has been demonstrated as an effective method to reinforce or repair the structural elements in the application of civil engineering. One issue that affects the effectiveness of FRP bonded system is the interfacial integrity between FRP and bonded substrate. The interfacial defect can cause the deterioration of the performance of strengthened/repaired structures, which should be identified as early as possible. Compared with conventional non-destructive techniques (NDTs), image acquisition method, such as high-speed camera, has received increasing attention due to the advantages of its non-sensor/wiring requirements. Coupled with proper video processing techniques, the high-speed camera has been reported as an effective tool in the interfacial defect detection for FRP bonded system. Moreover, the accuracy of results from high-speed camera is sensitive to the excitation resources applied on the FRP bonded system, since the vibration response of FRP varies under different excitation methods. In this research, three typical excitation methods for FRP bonded system, i.e. mechanical impact excitation, air pressure excitation and acoustic excitation, were tested to evaluate their effects on the detection accuracy using high-speed camera in FRP bonded system. The findings provide practical recommendations on the selection of proper excitation methods for the applications of high-speed cameras in the defect detection of FRP bonded system.
机译:纤维增强聚合物(FRP)增强已被证明是在土木工程应用中增强或修复结构元件的有效方法。影响FRP粘合系统有效性的一个问题是FRP和粘合基材之间的界面完整性。界面缺陷会导致加固/修复结构的性能下降,应尽早发现。与传统的非破坏性技术(NDT)相比,诸如高速相机之类的图像采集方法由于其非传感器/布线要求的优势而受到越来越多的关注。据报道,结合适当的视频处理技术,高速摄像机已成为FRP粘结系统界面缺陷检测的有效工具。此外,由于FRP的振动响应在不同的激励方法下会发生变化,因此高速相机的结果准确性对应用于FRP粘结系统的激励资源敏感。在这项研究中,测试了FRP粘结系统的三种典型激励方法,即机械冲击激励,气压激励和声激励,以评估它们对FRP粘结系统中使用高速摄像机的检测精度的影响。这些发现为选择适合于FRP粘结系统缺陷检测中的高速相机的激励方法提供了实用建议。

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