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Effect of continuous optical fiber bonding on ultrasonic detection using fiber Bragg grating

机译:连续光纤键合对光纤布拉格光栅超声检测的影响

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For laboratory demonstrations, Lamb wave detection using fiber Bragg grating (FBG) sensors is typically performed with only the grating location spot bonded and with the fiber axis aligned with the ultrasonic propagation direction. However, in reality, the entire length of fiber is often bonded to protect the fiber from any environmental damage, referred to here as continuous bonding. Theoretically, the Lamb wave signal can couple to the guided traveling wave in the optical fiber at any adhered location, which could potentially produce output signal distortion. In this paper, we investigate the impact of continuously bonding a long length of optical fiber on the measured Lamb wave signal detected by an FBG. Therefore, an experiment is performed to measure the Lamb wave signals excited from a PZT actuator using a surface bonded FBG with varying optical fiber bond length, indicating that the output FBG response remains constant with changing length. The second experiment investigates the FBG angular response to the traveling wave in the optical fiber, and compares to the conventional case where FBG directly measures the Lamb waves with varying angle. Specifically, the optical fiber is bonded to the plate at a distance away from the FBG. The Lamb wave is launched to the bond location with varying angles, which is coupled to traveling wave, then measured with FBG. The results indicate that the mechanism of the Lamb wave transfer to the directly bonded FBG is through displacement matching, whereas that of the traveling wave is through a forced excitation.
机译:对于实验室演示,通常仅在粘结光栅位置点且光纤轴与超声传播方向对齐的情况下,执行使用光纤布拉格光栅(FBG)传感器进行的兰姆波检测。然而,实际上,通常将纤维的整个长度粘合以保护纤维不受任何环境损害,在此称为连续粘合。从理论上讲,兰姆波信号可以在任何粘附位置耦合到光纤中的引导行波,这有可能产生输出信号失真。在本文中,我们研究了连续粘接长距离光纤对FBG检测到的兰姆波信号的影响。因此,进行了一项实验,使用具有变化的光纤键合长度的表面键合FBG测量从PZT执行器激发的兰姆波信号,表明输出FBG响应随长度变化而保持恒定。第二个实验研究了FBG对光纤中行波的角响应,并与FBG直接测量变化角度的Lamb波的常规情况进行了比较。具体而言,将光纤在离FBG一定距离处粘结到板上。兰姆波以不同的角度发射到键合位置,再与行波耦合,然后用FBG进行测量。结果表明,Lamb波传递到直接键合的FBG的机制是通过位移匹配,而行波传递的是通过强迫激励。

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