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Demonstration of detectability of SHM system with FBG/PZT hybrid system in composite wing box structure

机译:展示复合机翼盒结构中FBG / PZT混合系统的SHM系统的可检测性

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We have developed a novel damage monitoring system that can monitor the integrity of composite structures in aircrafts. In this system, fiber Bragg grating (FBG) sensors are used as sensors and piezoelectric transducers (PZT) are used as the generators of elastic waves that propagate in the structure to be inspected. The damage monitoring system can detect the structural integrity by the change in elastic waves that are detected by the FBG sensor and arrayed waveguide grating (AWG)-type filter. We confirmed that the structure health monitoring (SHM) system was able to monitor the damage initiation and propagation by a change in the waveform of the elastic waves in coupon specimens and structural element specimens. In this study, we demonstrate the detectability of the damage monitoring system by using a subcomponent test specimen that simulates an actual aircraft wing box structure composed of carbon fiber reinforced plastics (CFRPs). The FBG sensors and PZTs are bonded to the surfaces of hat-shaped stringers by an adhesive. Damages such as de-bonding and delamination are introduced in the bonded sections of the skin and stringers by impact. Damage monitoring and diagnosis are carried out by the SHM system under ambient conditions. We successfully verify the detectability of our system.
机译:我们已经开发了一种新颖的损坏监测系统,可以监测飞机上复合结构的完整性。在该系统中,光纤布拉格光栅(FBG)传感器用作传感器,而压电换能器(PZT)用作在要检查的结构中传播的弹性波的发生器。损伤监测系统可以通过FBG传感器和阵列波导光栅(AWG)型滤波器检测到的弹性波变化来检测结构完整性。我们确认,结构健康监测(SHM)系统能够通过试样和结构件试样中弹性波波形的变化来监测损伤的发生和蔓延。在这项研究中,我们通过使用子组件测试样本演示了损害监测系统的可检测性,该子样本模拟了由碳纤维增强塑料(CFRP)组成的实际飞机机翼盒结构。 FBG传感器和PZT通过粘合剂粘合到帽子形桁条的表面上。诸如脱粘和分层之类的损伤会通过冲击而引入到皮肤和纵梁的粘合部分中。 SHM系统在环境条件下进行损坏的监视和诊断。我们成功验证了系统的可检测性。

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