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Optimization of the Bias Magnetic Field of Shear Wave EMATs

机译:剪切波EMAT的偏置磁场的优化

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摘要

The main advantage of electromagnetic acoustic transducers (EMATs) over piezoelectric transducers is that no direct contact with the specimen under test is required. Therefore, EMATs can be used to test through coating layers. However, they produce weaker signals, and hence, their design has to be optimized. This paper focuses on the design of a Lorentz force shear wave EMAT and its application in thickness gaging; special emphasis is placed on the optimization of the design elements that correspond to the bias magnetic field of the EMAT. A configuration that consists of several magnets axisymmetrically arranged around a ferromagnetic core with like poles facing the core was found to give the best results. By using this configuration, magnetic flux densities in excess of 3 T were obtained in the surface of a specimen; the maximum value achieved by a single magnet under similar conditions is roughly 1.2 T. If the diameter of an EMAT ultrasonic aperture is 10 mm, the proposed configuration produces signals roughly 20 dB greater than a single magnet, while for a given overall EMAT volume, signals were greater than 3–6 dB. Linear and radial shear wave polarizations were also compared; a higher mode purity and signal intensity were obtained with the linear polarization.
机译:电磁声换能器(EMAT)优于压电换能器的主要优点是不需要与被测样品直接接触。因此,EMAT可用于测试涂层。但是,它们产生的信号较弱,因此必须优化其设计。本文着重介绍了洛仑兹力剪切波EMAT的设计及其在测厚仪中的应用。特别强调与EMAT偏置磁场相对应的设计元素的优化。已经发现,由围绕铁磁芯轴对称排列的多个磁体组成的构型具有最佳结果,该磁体在铁磁芯周围具有类似的磁极。通过采用这种结构,在试样表面获得了超过3T的磁通密度。在类似条件下,单个磁体所能达到的最大值约为1.2T。如果EMAT超声波孔径的直径为10 mm,则在给定整体EMAT体积的情况下,所提出的配置会产生比单个磁体大20 dB的信号,信号大于3–6 dB。还比较了线性和径向剪切波的极化。通过线性极化可以获得更高的模式纯度和信号强度。

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