Beam divergence calculation of an electromagnetic acoustic transducer for the Non-Destructive Evaluation of plate-like structures

Siddharth Advani, Jason K. Van Velsor, J. Rose
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引用次数: 6

Abstract

Ultrasonic guided waves are now proving to be a viable method for real-world long-range Non-Destructive Evaluation (NDE) applications. In order to generate a specific guided wave mode optimally, knowledge of the sensor parameters becomes imperative. This paper attempts to experimentally measure the beam divergence in an Electro-Magnetic Acoustic Transducer (EMAT) that is used to generate Shear Horizontal (SH) guided waves in a mild steel plate. The commercial finite element package ABAQUS™ is then used to run 3D simulations to validate these experimental results. Based on these results, a planar defect study is also carried out. From all these investigations, the minimum degree of rotation of the EMAT can be set when used in a real-time ultrasonic guided wave omni-directional inspection system.
用于板状结构无损检测的电磁声换能器的波束发散计算
超声导波现在被证明是一种可行的方法,在现实世界的远程无损评估(NDE)应用。为了最优地产生特定的导波模式,了解传感器参数变得至关重要。本文试图通过实验测量电磁声换能器(EMAT)中的光束散度,该换能器用于在低碳钢板中产生剪切水平(SH)导波。然后使用商业有限元软件包ABAQUS™进行3D模拟以验证这些实验结果。在此基础上,进行了平面缺陷的研究。通过以上研究,可以在实时超声导波全方位检测系统中设置EMAT的最小旋转度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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