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一种用于板的全向剪切水平波磁致伸缩贴片换能器的研制。

Development of an omni-directional shear-horizontal wave magnetostrictive patch transducer for plates.

机构信息

Division of WCU Multiscale Mechanical Design, School of Mechanical and Aerospace Engineering, Seoul National University, 1 Gwanak-ro, Gwanak-gu, Seoul 151-742, Republic of Korea.

出版信息

Ultrasonics. 2013 Sep;53(7):1304-8. doi: 10.1016/j.ultras.2013.03.015. Epub 2013 Apr 6.

Abstract

As an effective tool to inspect large plates, omni-directional guided wave transducers have become more widely used to form phased-array inspection systems. While omni-directional Lamb wave transducers have been successfully utilized in the systems, omni-directional Shear-Horizontal (SH) wave transducers have not been investigated. In this paper, we propose an omni-directional SH magnetostrictive patch transducer that consists of an annular magnetostrictive patch, a toroidal coil and a permanent magnet. After presenting the unique configuration of the proposed transducer and its working principle, the omni-directivity of the developed transducer is verified through simulations and experiments conducted in an aluminum plate. The frequency characteristics of the proposed transducer depending on the patch size are also investigated as the underlying reference data for future construction of an SH phased-array system.

摘要

作为一种检测大板材的有效工具,全向导波换能器已越来越多地被用于形成相控阵检测系统。虽然全向 Lamb 波换能器已经在系统中得到了成功应用,但全向剪切水平(SH)波换能器尚未得到研究。在本文中,我们提出了一种由环形磁致伸缩贴片、环形线圈和永磁体组成的全向 SH 磁致伸缩贴片换能器。在介绍了所提出的换能器的独特结构及其工作原理之后,通过在铝板上进行的模拟和实验验证了所开发的换能器的全向性。还研究了所提出的换能器的频率特性取决于贴片尺寸,作为未来构建 SH 相控阵系统的基础参考数据。

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