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Influence of Coil Parameters on Transduction Performance of Unidirectional EMATs for Rayleigh Wave

机译:线圈参数对瑞利波单向馈波转导性能的影响

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Electromagnetic acoustic transducer (EMAT) for Rayleigh wave has been widely used as a promising tool for flaw detection of metal plates due to its advantages such as high sensitivity to surface defects and low attenuation. Recently, numerous studies have focused on the unidirectional EMAT for Rayleigh wave as it can overcome the disadvantages such as low signal-to-noise ratio and existence of unfavorable received signals of typical EMAT. Since the unidirectional EMAT has been designed based on the principle of wave interference, its performance is sensitive to the parameters of the coil. In order to fully explore the influence of coil dimensions on the transduction performance of a unidirectional EMAT, a 2-D time domain finite model is established based on the Lorentz force mechanism. Using the model, the influence of coils on the transduction performance of a unidirectional EMAT for Rayleigh wave has been discussed. Experiments have been carried out to verify the validity of that model.
机译:用于瑞利波的电磁声换能器(EMAT)已被广泛用作由于其对表面缺陷的高敏感性和低衰减等优点而被广泛地用作金属板的探测器。最近,许多研究专注于瑞利波的单向EMAT,因为它可以克服诸如低信噪比和典型EMAT的不利接收信号的低信噪比和存在的缺点。由于根据波干扰原理设计了单向EMAT,因此其性能对线圈的参数敏感。为了充分探索线圈尺寸对单向EMAT的转导性能的影响,基于洛伦兹力机制建立了2-D时域有限模型。使用该模型,讨论了线圈对瑞利波为单向射波的转换性能的影响。已经进行了实验以验证该模型的有效性。

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