使用新型V(z)声换能器设计增强多层结构埋层中的导波检测

IF 1.3 Q3 ACOUSTICS
M. Lematre, M. Lethiecq
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引用次数: 0

摘要

本文提出了利用一种新的V(z)换能器来增强多层结构中低能量声导波的产生和探测的可能性。通过定义由分段压电元件组成的改进V(z)换能器,声能可以以这种方式定向到特定角度,从而产生能量较低的导波。通过与经典V(z)换能器的结果进行比较,表明这种波的产生和探测有了很大的改进,特别是对于多层结构中埋藏层的低能量波。这在V(z)光谱的分量上尤其明显。本文首先对多单元聚焦换能器的修正V(z)特征进行了详细的建模。然后,为了说明我们提出的方法的优点,讨论了三层结构(铝/环氧树脂/钢)。通过特定的导波来表征“埋藏”层的弹性特性,这种方法的有趣之处在于,用经典的V(z)换能器很难检测到,甚至根本无法检测到,特别是对于三层结构中对应于钢层的A0和S0模式。在本研究中,我们还开发了一种特定的跟踪方法,用于在所考虑的频率范围内具有大相速度变化的特定导波,如钢子层的S0模式的情况。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhancement of Guided Wave Detection and Measurement in Buried Layers of Multilayered Structures Using a New Design of V(z) Acoustic Transducers
This paper presents the possibility of enhancement of the generation and detection of poorly energetic acoustic-guided waves in multilayered structures using a new design for a V(z) transducer. By defining a modified V(z) transducer composed of segmented piezoelectric elements, the acoustical energy can be directed towards specific angles in such a way as to generate guided waves that are poorly energetic. By comparing the results using this new design to those obtained with a classical V(z) transducer, it is shown that the generation and detection of such waves is greatly improved, especially for poorly energetic waves that belong to a buried layer in a multilayered structure. This is especially seen on the components of the spectra of V(z). The modeling of the modified V(z) signature for a multi-element focused transducer is widely detailed first. Then, in order to illustrate the advantages of our proposed method, a three-layer structure (aluminum/epoxy/steel) is discussed. The interest of this method for the characterization of elastic properties of “buried” layers through specific guided waves that are detected with great difficulty—or even not at all—with a classical V(z) transducer is demonstrated, especially for the A0 and S0 modes corresponding to the steel layer inside the three-layer structure. In this study, we also develop a specific tracking method for particular guided waves possessing large phase velocity variations over the considered frequency range, as is the case for the S0 mode of the steel sub-layer.
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来源期刊
CiteScore
3.70
自引率
0.00%
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审稿时长
11 weeks
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