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Fiber Bragg Grating Sensor/Piezoelectric Actuator Hybrid System for Damage Detection in Composite Laminates

机译:复合层压板损伤检测光纤布拉格光栅传感器/压电致动器混合系统

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In this paper, fiber Bragg grating (FBG) sensor and piezoelectric (PZT) actuator are used to develop a hybrid system for the evaluation of delamination in glass fiber-reinforced epoxy (GF/EP) composite laminates. The surface-bonded PZT actuator generates ultrasonic Lamb wave in the composite laminates, while the FBG sensor, which is embedded in the composite laminates, captures the Lamb wave signal. Wavelet analysis is introduced to extract signal spectrographic characteristics in the time-scale domain appropriately. Since the propagation characteristics of Lamb wave is altered by the existence of damage in the composite laminates, delamination information can be obtained from the received signal. With the assistance of a signal generation and an acquisition system, this methodology enables active sensing and non-destructive evaluation of delamination in the composite laminates. Experiments have been carried out with GF/EP composite beams to examine the feasibility of the proposed detection technique. The acquired and processed Lamb wave signals corresponding to different delamination sizes are compared.
机译:在本文中,光纤布拉格光栅(FBG)传感器和压电(PZT)致动器用于开发用于评估玻璃纤维增​​强环氧(GF / EP)复合层压材料中分层的混合系统。表面键合的PZT致动器在复合层压板中产生超声羔羊波,而嵌入复合层压板中的FBG传感器,捕获羊波信号。引入小波分析以适当地提取时间尺度域中的信号光谱特性。由于通过在复合层压板中存在损坏而改变羊波的传播特性,因此可以从接收的信号获得分层信息。在信号发电和采集系统的帮助下,该方法可以在复合层压板中激活和非破坏性评估分层。通过GF / EP复合梁进行了实验,以检查所提出的检测技术的可行性。比较对应于不同分层大小的获取和处理的羊羔波信号。

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