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Alternating winding magnetostrictive electromagnetic acoustic transducer for pipe torsional guided wave generation

机译:交变绕组磁致伸缩电磁声换能器用于管道扭转导波的产生

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Ultrasonic guided waves propagating in bounded elastic media called waveguide are used extensively nowadays for rapid screening and long distance inspection of defect-prone structures. Various types of transducers are available for guided wave generation, including piezoelectric transducers and electromagnetic acoustic transducers (EMATs) etc.. EMAT is based on Lorentz force and/or magnetostrictive effect, and advantageous sometimes because of its non-contact nature. An alternating winding magnetostrictive type EMAT for torsional mode ultrasonic guided wave generation in a steel pipe is introduced in this paper. This new transducer design is composed of a pre-magnetized Nickel strip with circumferential static magnetic field and a coaxial coil in an alternating winding pattern. Theoretically this transducer design could be viewed as an extension of existing magnetostrictive type EMAT for SH guided wave generation in a steel plate. The alternating winding pattern enables accurate and easy control of guided wave mode. Results of experiments done on a steel pipe were shown to verify this transducer design.
机译:如今,在有界弹性介质(称为波导)中传播的超声波导波已广泛用于快速筛选和长距离检查容易产生缺陷的结构。各种类型的换能器都可用于导波生成,包括压电换能器和电磁声换能器(EMAT)等。EMAT基于洛伦兹力和/或磁致伸缩效应,由于其非接触性,有时具有优势。介绍了一种在钢管中产生扭转模式超声导波的交变磁致伸缩型EMAT。这种新的换能器设计由具有周向静磁场的预磁化镍条和交替缠绕模式的同轴线圈组成。从理论上讲,这种换能器设计可以看作是现有的磁致伸缩型EMAT的扩展,用于在钢板中生成SH导波。交替缠绕的模式可以精确,轻松地控制导波模式。显示了在钢管上完成的实验结果,以验证此换能器设计。

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