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Development of an omni-directional magnetic-concentrator-type electromagnetic acoustic transducer

机译:全向磁选式电磁声换能器的研制

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摘要

As an important branch of non-destructive testing, electromagnetic ultrasonic testing is widely used in various industries because of its high detection efficiency and the lack of a need for the test sample to have a coupling agent or a surface pretreatment. As a core component of electromagnetic ultrasonic testing, electromagnetic acoustic transducers (EMATs) have received extensive attention in recent years. However, the mode selectivity of EMATs is reduced because of the non-uniformity of the magnetic field of traditional permanent magnets and the multimode phenomenon of guided waves. To solve this problem, an omni-directional magnetic-concentrator-type electromagnetic acoustic transducer (OD-MC-EMAT) is proposed herein. Which was added to the magnetic concentrator on a traditional EMAT to guide and concentrate the magnetic field of traditional permanent magnets, thereby improving the defect inspection ability of the EMAT. The proposed OD-MC-EMAT consisted of a cylindrical permanent magnet, an omni-directional magnetic concentrator, and a multi-cluster of circular meander coils, and it exhibited better mode selectivity than a traditional EMAT. A finite element simulation and an experiment proved that the mode selectivity of the transducer improved after adding the magnetic concentrator, and experiments to study the transducer characteristics and defect detection were also carried out. Finally, the configuration of the OD-MC-EMAT was optimized through an orthogonal experiment. The influence of each parameter on the transducing efficiency of the proposed OD-MC-EMAT was studied, and the optimal parameter combination was confirmed.
机译:作为无损检测的重要分支,电磁超声波检测由于其检测效率高并且不需要测试样品具有偶联剂或表面预处理而被广泛用于各个行业。作为电磁超声测试的核心组成部分,电磁声换能器(EMAT)近年来受到了广泛的关注。但是,由于传统永磁体磁场的不均匀性和导波的多模现象,使得EMAT的模式选择性降低。为了解决这个问题,本文提出了全向磁集中器型电磁声换能器(OD-MC-EMAT)。将其添加到传统EMAT的磁选矿机中,以引导和集中传统永磁体的磁场,从而提高了EMAT的缺陷检查能力。拟议的OD-MC-EMAT由圆柱形永磁体,全向磁集中器和圆形曲折线圈的多簇组成,并且比传统EMAT表现出更好的模式选择性。有限元模拟和实验证明,添加磁选机后,换能器的模式选择性有所提高,并进行了研究换能器特性和缺陷检测的实验。最后,通过正交实验优化了OD-MC-EMAT的配置。研究了每种参数对拟议OD-MC-EMAT转换效率的影响,并确定了最佳参数组合。

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