研究目的
To propose a sensor diagnostic method for monitoring the operational status of Piezoelectric Transducers (PZT) in order to detect bonding defects/damages between a PZT patch and a host structure, based on the nonlinear behavior of the PZT/structure contact.
研究成果
The proposed method based on nonlinearities associated with impaired sensors provides a baseline-free detection tool for the identification of debonded sensors in SHM networks. It allows distinguishing fully bonded sensors from impaired ones and characterizing possible debondings of the sensors mounted on the structure.
研究不足
The ToF technique requires knowing the ToF associated with the intact sensor a priori and the debonded region must be oriented to the exciting sensor. The method is not baseline-free and requires comparison with an undamaged sensor.
1:Experimental Design and Method Selection:
The study involved numerical studies and experiments where disbonds were created by inhibiting the adhesive action on a part of the interface through Te?on film. The method is based on the nonlinear behaviour of the contact PZT/structure.
2:Sample Selection and Data Sources:
An aluminium plate with PZT sensors was used. Sensors were partially bonded with artificial damages created by insertion of a thin Te?on patch.
3:List of Experimental Equipment and Materials:
Signal generator TG5012A, power-ampli?er Falco System WMA-300, aluminium plate, oscilloscope Serie 3000 PicoScope, PC with software PicoScope 6 and MATLAB codes, PZT sensors made of PIC
4:Experimental Procedures and Operational Workflow:
2 The sample was excited with a 200 kHz–5 peaks toneburst to compare the Time of Flight (ToF) between sensors. Harmonic analyses were carried out to evaluate nonlinearities in the acquired signals.
5:Data Analysis Methods:
Short Time Fourier Transform (STFT) was used to evaluate the ToF of Lamb wave packet. Fast Fourier Transform (FFT) was used to catch the 'fully bonded' sensor by monitoring first superharmonic amplitude.
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