4.5 Article

Acoustic emission localization in concrete using a wireless air-coupled monitoring system

期刊

SMART STRUCTURES AND SYSTEMS
卷 32, 期 4, 页码 195-205

出版社

TECHNO-PRESS
DOI: 10.12989/sss.2023.32.4.195

关键词

acoustic emission; air-coupled; beamforming; concrete structures; leaky Rayleigh wave; location; monitoring system

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This study extends the traditional source localization method for concrete structures to a non-contact air-coupled MEMS microphones array. By collecting leaky Rayleigh waves, the proposed system allows for monitoring large plate-like concrete structures. Experimental results demonstrate that the system can accurately determine the locating map of AE source, with sufficient accuracy for most field monitoring applications.
The contact acoustic emission (AE) monitoring system is time-consuming and costly for monitoring concrete structures in large scope, in addition, the great difference in acoustic impedance between air and concrete makes the detection process inconvenient. In this work, we broaden the conventional AE source localization method for concrete to the non-contact (air-coupled) micro-electromechanical system (MEMS) microphones array, which collects the energy-rich leaky Rayleigh waves, instead of the relatively weak P-wave. Finite element method was used for the numerical simulations, it is shown that the propagation velocity of leaky Rayleigh waves traveling along the air-concrete interface agrees with the corresponding theoretical properties of Lamb wave modes in an infinite concrete slab. This structures the basis for implementing a non-contact AE source location approach. Based on the experience gained from numerical studies, experimental studies on the proposed air-coupled AE source location in concrete slabs are carried out. Finally, it is shown that the locating map of AE source can be determined using the proposed system, and the accuracy is sufficient for most field monitoring applications on large plate-like concrete structures, such as tunnel lining and bridge deck.

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