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Damage Detection in CFRP Bonded Structures by Using Fiber Bragg Grating Sensors as Ultrasonic Wave Receivers

机译:使用光纤布拉格光栅传感器作为超声波接收器,CFRP粘结结构中的损坏检测

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The authors developed a damage detection system that generates ultrasonic waves with a piezo-ceramic actuator and receives them by a fiber Bragg grating (FBG) sensor. In this research, this system was applied to evaluate debonding progress in CFRP skin/stringer bonded structures. FBG sensors were bonded on the stringer or embedded in the adhesive layer. Then, ultrasonic wave at 300kHz was propagated through the debonded region, and the wavelet transform was applied to the received waveform. After that, a new damage index and a correlation coefficient were calculated from the distribution of the wavelet transform coefficient. As a result, the damage index increased and the correlation coefficient decreased with an increase in the debonded area. Hence the length of the debonding between the skin and the stringer could be well evaluated.
机译:作者开发了一种损坏检测系统,用压电陶瓷致动器产生超声波,并通过光纤布拉格光栅(FBG)传感器接收它们。在本研究中,应用该系统以评估CFRP皮肤/纵梁粘结结构中的剥离进展。 FBG传感器在纵梁上粘合或嵌入粘合剂层中。然后,通过剥离区域传播300kHz的超声波,并将小波变换应用于接收的波形。之后,根据小波变换系数的分布计算了新的损伤指数和相关系数。结果,损伤指数增加,相关系数随禁止区域的增加而降低。因此,皮肤与纵梁之间的剥离的长度可以得到很好的评估。

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