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基于仿真分析与正交试验法的表面波电磁超声换能器优化设计

Optimization Design of Surface Wave Electromagnetic Acoustic Transducers Based on Simulation Analysis and Orthogonal Test Method.

作者信息

Lan Ju, Zhang Jingjun, Jia Xiaojuan, Gao Ruizhen

机构信息

College of Mechanical and Equipment Engineering, Hebei University of Engineering, Handan 056038, China.

出版信息

Sensors (Basel). 2022 Jan 11;22(2):524. doi: 10.3390/s22020524.

Abstract

The energy conversion of electromagnetic acoustic transducers (EMATs) is typically lower, which seriously restricts the application of EMATs in the field of non-destructive testing and evaluation. In this work, parameters of surface wave EMATs, including structural parameters and electrical parameters, are investigated using the orthogonal test method to improve the transducer's energy conversion efficiency. Based on the established finite element 2-D model of EMATs, the amplitude of the displacement components at the observation point of a plate is the optimization objective to be maximized with five parameters pertaining to the magnets, meander-line coils, and excitation signal as design variables. Results show that the signal amplitude of EMATs is 3.48 times on in-plane and 3.49 times on out-of-plane, respectively, compared with the original model. Furthermore, a new material (amorphous nanocrystalline material of type 1K107) is applied to optimize the magnetic circuit of EMATs and enhance the eddy current in an aluminum plate to increase the signal amplitude. Finally, the signal amplitudes obtained from the three types of models, that is, the original one, the optimization one after an orthogonal test, and the optimization one with the addition of magnetic concentrators, are analyzed and compared, indicating that the signal amplitude, compared with the original one, is 6.02 times on in-plane and 6.20 times on out-of-plane, respectively.

摘要

电磁超声换能器(EMATs)的能量转换效率通常较低,这严重限制了其在无损检测与评估领域的应用。在这项工作中,采用正交试验法研究了表面波EMATs的参数,包括结构参数和电气参数,以提高换能器的能量转换效率。基于所建立的EMATs二维有限元模型,以板的观测点处位移分量的幅值作为优化目标,将与磁体、曲折线线圈和激励信号相关的五个参数作为设计变量进行最大化优化。结果表明,与原始模型相比,EMATs的信号幅值在平面内提高了3.48倍,在平面外提高了3.49倍。此外,应用一种新型材料(1K107型非晶纳米晶材料)优化EMATs的磁路,并增强铝板中的涡流以增加信号幅值。最后,对原始模型、正交试验后的优化模型以及添加磁集中器后的优化模型这三种模型所获得的信号幅值进行了分析和比较,结果表明,与原始模型相比,信号幅值在平面内提高了6.02倍,在平面外提高了6.20倍。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c822/8777999/ebd6a12aa479/sensors-22-00524-g001.jpg

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