Meander Line Coil EMAT Based on Spatial Pulse Compression for Rayleigh Waves

Chuan-liu Jiang, Zhan-peng Li, Shu-juan Wang, Sheng-Bin Wang, Ran Yang
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引用次数: 1

Abstract

Electromagnetic acoustic transducer (EMAT) has been applied to generate Rayleigh waves, for evaluating the surface and near-surface quality of a sample. The main disadvantages of EMAT are their low coupling efficiency and signal to noise ratio (SNR). Pulse compression technology is adopted to improve SNR, which designing a designed excitation waveform and corresponding a matched filter. This paper presents new methods, called linear wavelength modulation (LWM) and nonlinear wavelength modulation (NLWM), to design Rayleigh wave EMAT. Different from traditional structure, it used non-equidistant meander line coils, which based on spatial pulse compression. A finite element model is established to prove the new structure can excite wave packets with designed spatial wavelength distribution. The feasibility of spatial pulse compression and the effectiveness of the new method are proved by the simulation and experiments.
基于空间脉冲压缩的瑞利波弯曲线线圈EMAT
电磁声换能器(EMAT)已被用于产生瑞利波,以评估样品的表面和近表面质量。EMAT的主要缺点是耦合效率低,信噪比低。采用脉冲压缩技术提高信噪比,设计了设计好的激励波形和相应的匹配滤波器。本文提出了线性波长调制(LWM)和非线性波长调制(NLWM)两种设计瑞利波EMAT的新方法。与传统结构不同,它采用了基于空间脉冲压缩的非等距曲线线圈。建立了有限元模型,证明了该结构能在设计的空间波长分布下激发波包。仿真和实验验证了空间脉冲压缩的可行性和新方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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