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基于全方位剪切水平波的金属板损伤检测层析成像技术,用于补偿换能器的传递函数。

Omnidirectional shear horizontal wave based tomography for damage detection in a metallic plate with the compensation for the transfer functions of transducer.

机构信息

School of Mechanical and Aerospace Engineering, Seoul National University, 1 Gwanak-ro, Gwanak-gu, Seoul 08826, Republic of Korea; Samsung Advanced Institute of Technology, 130, Samsung-ro, Yeongtong-gu, Suwon-si, Gyeonggi-do 16678, Republic of Korea.

School of Mechanical and Aerospace Engineering, Seoul National University, 1 Gwanak-ro, Gwanak-gu, Seoul 08826, Republic of Korea.

出版信息

Ultrasonics. 2018 Aug;88:72-83. doi: 10.1016/j.ultras.2018.03.009. Epub 2018 Mar 17.

Abstract

Guided-wave based damage detection for plates has been widely studied for structural health monitoring. Because most of the earlier studies used dispersive Lamb waves, substantial efforts had to be made to alleviate the dispersive and multi-modal nature of Lamb waves and the effect of surface conditions. In contrast, shear-horizontal (SH) waves have better propagation characteristics suitable for the detection of damages in plates, but SH waves have not been widely used due to the lack of efficient methods to generate and sense omnidirectional SH waves. The objective of this study is to construct diagnostic images of damaged plates by using omnidirectional SH waves with a special emphasis on the compensation of the frequency-dependence of the SH wave transducers. The compensation is necessary to have reliable diagnostic images because its frequency-dependent characteristics considerably can affect imaging quality if they are not considered. Consequently, simplified, yet effective, models representing the transfer functions of the omnidirectional SH wave magnetostrictive patch transducer (OSH-MPT) are developed in this paper. To visualize the position and shape of the structural damages in a metallic plate, the virtual time-reversal imaging method is used and two alternative techniques are considered to compensate for the effects of the transfer functions of transducers in the imaging processes. The imaging results after the compensation appear quite promising, suggesting that the omnidirectional SH wave based enhanced time-reversal imaging can be an efficient inspection method for plate structures.

摘要

基于导波的板结构损伤检测在结构健康监测中得到了广泛的研究。由于早期的研究大多采用频散 Lamb 波,因此必须做出大量努力来减轻 Lamb 波的频散和多模态特性以及表面条件的影响。相比之下,剪切水平(SH)波具有更好的传播特性,适合于板中损伤的检测,但由于缺乏产生和感测全向 SH 波的有效方法,SH 波并未得到广泛应用。本研究的目的是利用全向 SH 波构建损伤板的诊断图像,特别强调补偿 SH 波换能器的频率相关性。由于其频率相关特性如果不考虑会严重影响成像质量,因此补偿是获得可靠诊断图像所必需的。因此,本文提出了简化但有效的模型来表示各向同性 SH 波磁致伸缩贴片换能器(OSH-MPT)的传递函数。为了可视化金属板中结构损伤的位置和形状,使用了虚拟时间反转成像方法,并考虑了两种替代技术来补偿换能器在成像过程中的传递函数的影响。补偿后的成像结果非常有前景,表明基于全向 SH 波的增强时间反转成像可以成为板结构的一种有效检测方法。

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