Simulation Study of the Localization of a Near-Surface Crack Using an Air-Coupled Ultrasonic Sensor Array

被引:6
|
作者
Delrue, Steven [1 ]
Aleshin, Vladislav [2 ]
Sorensen, Mikael [3 ,4 ]
De Lathauwer, Lieven [3 ,4 ]
机构
[1] KU Leuven Kulak, Wave Propagat & Signal Proc Res Grp, B-8500 Kortrijk, Belgium
[2] CNRS, UMR 8520, Inst Elect Microelect & Nanotechnol, Joint Int Lab LICS,LEMAC, F-59652 Villeneuve Dascq, France
[3] KU Leuven Kulak, Grp Sci Engn & Technol, B-8500 Kortrijk, Belgium
[4] Katholieke Univ Leuven, STADIUS, Dept Elect Engn ESAT, B-3001 Leuven Heverlee, Belgium
关键词
non-destructive testing; Nonlinear Air-Coupled Emission (NACE); crack localization; Direction Of Arrival (DOA); ultrasonic sensor array; ELASTIC-WAVE SPECTROSCOPY; DISCERN MATERIAL DAMAGE; ACOUSTIC NONLINEARITY; NEWS TECHNIQUES; CONTACT; IDENTIFICATION;
D O I
10.3390/s17040930
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
The importance of Non-Destructive Testing (NDT) to check the integrity of materials in different fields of industry has increased significantly in recent years. Actually, industry demands NDT methods that allow fast (preferably non-contact) detection and localization of early-stage defects with easy-to-interpret results, so that even a non-expert field worker can carry out the testing. The main challenge is to combine as many of these requirements into one single technique. The concept of acoustic cameras, developed for low frequency NDT, meets most of the above-mentioned requirements. These cameras make use of an array of microphones to visualize noise sources by estimating the Direction Of Arrival (DOA) of the impinging sound waves. Until now, however, because of limitations in the frequency range and the lack of integrated nonlinear post-processing, acoustic camera systems have never been used for the localization of incipient damage. The goal of the current paper is to numerically investigate the capabilities of locating incipient damage by measuring the nonlinear airborne emission of the defect using a non-contact ultrasonic sensor array. We will consider a simple case of a sample with a single near-surface crack and prove that after efficient excitation of the defect sample, the nonlinear defect responses can be detected by a uniform linear sensor array. These responses are then used to determine the location of the defect by means of three different DOA algorithms. The results obtained in this study can be considered as a first step towards the development of a nonlinear ultrasonic camera system, comprising the ultrasonic sensor array as the hardware and nonlinear post-processing and source localization software.
引用
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页数:21
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