Author:
Kong Yue,Chen Weimin,Liu Ning,Kang Boqi,Li Min
Abstract
The knowledge of cracking mechanisms is significant for evaluating the healthy condition of aircraft structures and can be retrieved by moment tensor inversion based on the acoustic emission (AE) phenomenon. For engineering applications, the inversion method cannot compute accurate results because the waveforms recorded by sensors are commonly contaminated by noise. Consequently, the correlation calculation of de-noising is introduced into the inversion and sufficient correlation functions are needed. In this paper, the correlation function of raw waveforms is proposed and based on the inherent similarity between the signals induced by one source and recorded by different sensors. According to the synthetic tests, the error of the inversion method based on the new correlation function is approximately 1/10 of that of the commonly used amplitude method. Although the inversion accuracy is influenced by the phase differences and the ratio of noise frequency to signal frequency, the influence is limited and the new correlation function is suitable for most practical cases. The inversion method based on the new correlation function does not require the knowledge of noise spectra or any complex calculation processes and provides a new way to improve the inversion accuracy of cracking mechanisms with little additional computation consumption.
Funder
the Strategic Priority Research Program of the Chinese Academy of Sciences
the National Natural Science Foundation of China
Reference37 articles.
1. Microradiographic characterization of pitting corrosion damage and fatigue life;Rokhlin,1999
2. Quantitative assessment of corrosion in aircraft structures using scanning pulsed eddy current;Bieber,1998
3. Ultrasonic detection of fatigue cracks by thermo-optical modulation;Yan,1999
4. Fatigue crack monitoring of riveted aluminium strap joints by Lamb wave analysis and acoustic emission measurement techniques
5. Acoustic Emission Monitoring of Small Wind Turbine Blades
Cited by
3 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献