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A damage identification technique for CF/EP composite laminates using distributed piezoelectric transducers
Authors:Zhongqing Su  Lin Ye  Xiongzhu Bu  
Affiliation:

a Centre for Advanced Materials Technology (CAMT), School of Aerospace Mechanical and Mechatronic Engineering, The University of Sydney, Building J07, Sydney, NSW 2006, Australia

b School of Mechanical Engineering, Nanjing University of Science and Technology, 210094, China

Abstract:In this study, a damage identification approach was developed for carbon fibre/epoxy composite laminates with localized internal delamination. Propagation of the Lamb wave in laminates and its interaction with the delamination were examined. The fundamental symmetric Lamb wave mode, S0, and the lowest order shear wave mode, S0, were chosen to predict damage location. A real-time active diagnosis system was therefore established. This technique uses distributed piezoelectric transducers to generate and monitor the ultrasonic Lamb wave with narrowband frequency. The two-way switches were employed to minimize the number of transducers. A signal-processing scheme based on the time–frequency spectrographic analysis was utilised to extract useful diagnostic information. Also, an optimal identification method was applied on damage searching procedure to reduce errors and obtain the diagnostic results promptly. Experiments were conducted on 0/?45/45/90]s CF/EP laminates to verify this diagnosis system. The results obtained show that satisfactory detection accuracy could be achieved.
Keywords:Structural health monitoring  Fibre-reinforced composite  Lamb wave  Signal processing  Smart structures
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