Infrared thermal wave detection of interfacial debonding defects of thermal barrier coatings based on non-linear frequency modulation

Author:

Tang Qing-Ju1,Zhang Tao1,Gu Zhuo-Yan1,Bu Chi-Wu2

Affiliation:

1. School of Mechanical Engineering, Heilongjiang University of Science and Technology, Harbin, China

2. College of Light Industry, Harbin University of Commerce, Harbin, China

Abstract

In order to improve the reliability of detecting the debonding defects at the interface of thermal barrier coatings (TBC), a non-linear frequency modulated (NLFM) infrared thermal wave detection method is proposed. A NLFM infrared thermal wave detection system is built, and zirconia TBC specimens are prepared and tested. The effects of defect diameter, excitation power, initial frequency and termination frequency on the defect detection effect are analyzed. Three algorithms such as principal component analysis (PCA) are used to process the image sequence, and the signal-to-noise ratio (SNR) of each sequence processing algorithm is calculated and compared. The results show that the larger the diameter of the defect, the easier it is to be detected, and the appropriate adjustment of the excitation power or the reduction of the initial and termination frequencies is beneficial to the detection of defects. Compared with the other two algorithms, the PCA method is more effective for image sequence processing. It offers a reference for detecting debonding flaws at the TBC interface.

Publisher

National Library of Serbia

Subject

Renewable Energy, Sustainability and the Environment

Reference10 articles.

1. Wang, B., et al., Research and Application of Thermal Barrier Coatings for Aeroengine and Gas Turbine Blades, Aeroengine, 47 (2021), S1, pp. 25-31

2. Wang, Q., et al., Progress on Heat Insulation Performance of Thermal Barrier Coating, Journal of Functional Materials, 44 (2013), 23, pp. 3363-3367

3. Wang, Z. P., et al., Failure Mechanism, Improvement Method and Future Development Direction of Thermal Barrier Coatings, Surface Technology, 50 (2021), 7, pp. 126-137

4. Li, X. L., et al., The Application and Progress of Infrared Thermal Wave Non-destructive Detection Technology, Non-Destructive Testing, 37 (2015), 6, pp. 19-23

5. Chen, D. P., et al., Infrared Thermography NDT and Its Development, Computer Measurement and Control, 24 (2016), 4, pp. 1-6

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