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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >New Combination of Magnet and Coil of Electromagnetic Acoustic Transducer for Generating and Detecting Rayleigh Wave
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New Combination of Magnet and Coil of Electromagnetic Acoustic Transducer for Generating and Detecting Rayleigh Wave

机译:用于产生和检测瑞利波的电磁声换能器磁铁和线圈的新组合

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摘要

Nondestructive testing for identifying defects on the surface of metal materials is important for industries and infrastructures. The Rayleigh wave is widely used for detecting these surface defects. For replacing piezoelectric transducers with electromagnetic acoustic transducers (EMATs) for the surface inspection of metal materials, this article proposes a new magnet and coil combination consisting of a periodic-permanent-magnet (PPM) and a returned dislocation meander line coil. The returned dislocation meander line coil was developed using a traditional meander line coil, whose wires return from one side to another and shift for a certain distance. A 2-D finite-element simulation was conducted to analyze the performance of the proposed Rayleigh wave EMAT. The simulation results revealed that, compared with a large conventional magnet, the PPM increased the maximum magnetic flux density, and made the magnetic flux density distribution more concentrated on the specimen's surface, particularly below the coil. In the middle part of the coil, the PPM greatly increased the intensity of the horizontal magnetic field. Additionally, the returned dislocation meander line coil made full use of the strong magnetic field below the center of each small magnet and at the adjacent magnets. The designed Rayleigh wave EMAT was fabricated, and the experimental results revealed that the new design of the Rayleigh wave EMAT increased the received signal by 57.9% compared with the conventional Rayleigh wave EMAT.
机译:用于识别金属材料表面上缺陷的无损检测对于行业和基础设施来说是重要的。瑞利波广泛用于检测这些表面缺陷。为了用电磁声换能器(Emats)的压电换能器进行金属材料的表面检查,本文提出了一种由周期性 - 永磁体(PPM)和返回的位错曲线线圈组成的新磁体和线圈组合。使用传统的曲线线圈开发出返回的错位曲线线圈,其导线从一侧返回到另一侧并移位一定距离。进行了2-D有限元模拟以分析所提出的瑞利波EMAT的性能。仿真结果表明,与大常规磁体相比,PPM增加了最大磁通密度,使磁通密度分布更浓缩在样品的表面上,特别是在线圈下方。在线圈的中间部分中,PPM大大增加了水平磁场的强度。另外,返回的错位曲线线圈充分利用每个小磁体的中心和相邻磁体下方的强磁场。制造了设计的瑞利波EMAT,实验结果表明,与传统的瑞利波EMAT相比,瑞利波EMAT的新设计将接收的信号增加了57.9%。

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