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用于瑞利波表面缺陷检测的相控电磁声换能器阵列

Phased Electromagnetic Acoustic Transducer Array for Rayleigh Wave Surface Defect Detection.

作者信息

Xiang Lunci, Greenshields David, Dixon Steve, Edwards Rachel S

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2020 Jul;67(7):1403-1411. doi: 10.1109/TUFFC.2020.2968151. Epub 2020 Jan 20.

Abstract

A phased electromagnetic acoustic transducer (EMAT) array system has been developed for the detection and characterization of surface-breaking defects. An array of four linear coils that are individually controlled is used to generate a Rayleigh wave. The high-current electronics combined with the coil designs enables the array to generate either narrowband or broadband signals, and controlling the phase delay between the channels makes it possible to change the ultrasound wavelength without requiring the physical separation of the coils to be changed. The experimental results show that the four-coil phased array can generate a wavelength range from 3.0 to 11.7 mm. Surface-breaking defects were characterized using a transmit-receive setup with a broadband EMAT detector being used to detect the Rayleigh wave. Machined surface slots with different depths were used for technique validation. The results show that the array is sensitive to surface defects and a wide depth sensitivity range for defect sizing can be easily achieved by applying phasing to tune the wavelength of operation. A large increase in detection flexibility is immediately shown.

摘要

已开发出一种用于检测和表征表面开口缺陷的相控电磁超声换能器(EMAT)阵列系统。使用一组四个单独控制的线性线圈来产生瑞利波。高电流电子设备与线圈设计相结合,使该阵列能够产生窄带或宽带信号,并且通过控制通道之间的相位延迟,可以在不改变线圈物理间距的情况下改变超声波长。实验结果表明,四线圈相控阵列能够产生3.0至11.7毫米的波长范围。使用发射-接收装置对表面开口缺陷进行表征,其中宽带EMAT探测器用于检测瑞利波。采用不同深度的加工表面槽进行技术验证。结果表明,该阵列对表面缺陷敏感,通过应用相位调整来调节工作波长,可以轻松实现宽深度范围内的缺陷尺寸检测灵敏度。检测灵活性大幅提高。

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