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用于板材检测的可聚焦和旋转的剪切波周期永磁电磁声换能器的优化

Optimization of a Focusable and Rotatable Shear-Wave Periodic Permanent Magnet Electromagnetic Acoustic Transducers for Plates Inspection.

作者信息

Song Xiaochun, Qiu Gongzhe

机构信息

School of Mechanical Engineering, Hubei University of Technology, Wuhan 430068, China

出版信息

Sensors (Basel). 2017 Nov 24;17(12):2722. doi: 10.3390/s17122722.

Abstract

Due to the symmetry of conventional periodic-permanent-magnet electromagnetic acoustic transducers (PPM EMATs), two shear (SH) waves can be generated and propagated simultaneously in opposite directions, which makes the signal recognition and interpretation complicatedly. Thus, this work presents a new SH wave PPM EMAT design, rotating the parallel line sources to realize the wave beam focusing in a single-direction. The theoretical model of distributed line sources was deduced firstly, and the effects of some parameters, such as the inner coil width, adjacent line sources spacing and the angle between parallel line sources, on SH wave focusing and directivity were studied mainly with the help of 3D FEM. Employing the proposed PPM EMATs, some experiments are carried out to verify the reliability of FEM simulation. The results indicate that rotating the parallel line sources can strength the wave on the closing side of line sources, decreasing the inner coil width and the adjacent line sources spacing can improve the amplitude and directivity of signals excited by transducers. Compared with traditional PPM EMATs, both the capacity of unidirectional excitation and directivity of the proposed PPM EMATs are improved significantly.

摘要

由于传统的周期永磁电磁声换能器(PPM EMAT)具有对称性,两个剪切(SH)波可以同时产生并沿相反方向传播,这使得信号识别和解释变得复杂。因此,本文提出了一种新型的SH波PPM EMAT设计,通过旋转平行线源来实现波束在单一方向上的聚焦。首先推导了分布式线源的理论模型,并主要借助三维有限元法研究了一些参数,如内线圈宽度、相邻线源间距以及平行线源之间的夹角,对SH波聚焦和指向性的影响。采用所提出的PPM EMAT进行了一些实验,以验证有限元模拟的可靠性。结果表明,旋转平行线源可以增强线源闭合侧的波,减小内线圈宽度和相邻线源间距可以提高换能器激发信号的幅度和指向性。与传统的PPM EMAT相比,所提出的PPM EMAT的单向激发能力和指向性都有显著提高。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3ad7/5750529/16d5cb035a6f/sensors-17-02722-g001.jpg

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