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用于结构健康监测和无损检测的剪切水平波换能器:综述。

Shear horizontal wave transducers for structural health monitoring and nondestructive testing: A review.

机构信息

Applied Mechanics and Structure Safety Key Laboratory of Sichuan Province, School of Mechanics and Engineering, Southwest Jiaotong University, Chengdu, Sichuan 610031, China.

LTCS and Department of Mechanics and Engineering Science, College of Engineering, Peking University, Beijing 100871, China.

出版信息

Ultrasonics. 2021 Jul;114:106355. doi: 10.1016/j.ultras.2021.106355. Epub 2021 Feb 2.

Abstract

Shear horizontal (SH) waves are of great importance in structural health monitoring (SHM) and nondestructive testing (NDT), since the lowest order SH wave in isotropic plates is non-dispersive. The SH waves in plates, circumferential SH waves and torsional waves in pipes have remarkable resemblances in dispersion characteristics and wave structures, so the latter two can also be called as SH waves in pipes. This paper reviews the state-of-the-art research on SH wave transducers for SHM and NDT. These transducers are grouped into the following categories: Lorentz-force-based electromagnetic acoustic transducers (EMATs), magnetostrictive EMATs, shear wave piezoelectric wedge transducers, thickness-shear piezoelectric transducers and face-shear piezoelectric transducers. The working principles, applications, merits and limitations of different kinds of SH wave transducers are summarized, with a focus on discussing the various configurations for exciting and receiving directional, omnidirectional SH waves in plates and torsional waves in pipes. This paper is expected to greatly promote the applications of SH waves in SHM, NDT and the related areas such as elastic metamaterials.

摘要

剪切水平 (SH) 波在结构健康监测 (SHM) 和无损检测 (NDT) 中非常重要,因为各向同性板中的最低阶 SH 波是非色散的。板中的 SH 波、管道中的周向 SH 波和扭转波在频散特性和波结构上具有显著的相似性,因此后两者也可以称为管道中的 SH 波。本文综述了用于 SHM 和 NDT 的 SH 波换能器的最新研究进展。这些换能器分为以下几类:基于洛伦兹力的电磁声换能器 (EMAT)、磁致伸缩 EMAT、剪切波压电楔换能器、厚度剪切压电换能器和面切压电换能器。总结了不同类型的 SH 波换能器的工作原理、应用、优点和局限性,重点讨论了在板中激发和接收定向、全向 SH 波和管道中扭转波的各种配置。本文有望极大地促进 SH 波在 SHM、NDT 及弹性超材料等相关领域的应用。

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