基于环形传感器阵列和 Lamb 波的板状结构倾斜裂缝量化技术

IF 0.9 4区 物理与天体物理 Q4 ACOUSTICS
Z. Wang, Y. Yan, Z. Gao, B. Shi
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引用次数: 0

摘要

摘要 裂纹是薄板最常见的损伤之一。因此,快速准确地检测裂纹对薄板的无损检测具有重要意义。现有的无损检测技术大多侧重于裂纹定位,而不是裂纹长度和方向的量化。因此,本文提出了一种考虑波在传播过程中衰减的损伤指数,用于量化裂纹长度和方向。λ波由圆形传感器阵列发射和接收。根据 Lamb 波 A0 模式的异常反射,通过 Hilbert 变换提取裂纹处的反射。对裂纹长度和方向的影响进行了参数化研究,并根据回归分析给出了所提出的损伤指数与裂纹长度和角度之间的关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Inclined Crack Quantification of Plate-Like Structures Based on Circular Sensor Array and Lamb Waves

Inclined Crack Quantification of Plate-Like Structures Based on Circular Sensor Array and Lamb Waves

Inclined Crack Quantification of Plate-Like Structures Based on Circular Sensor Array and Lamb Waves

Cracks are one of the most common damages to thin plates. Therefore, rapid and accurate detection of cracks is of great significance in the nondestructive testing of thin plates. Most existing nondestructive testing technologies focus on crack localization rather than the quantification of the crack length and orientation. Therefore, this paper proposes a damage index, considering the wave attenuation during propagation, to quantify the crack length and orientation. Lamb waves are transmitted and received by a circular sensor array. Based on the abnormal reflection of the A0 mode of Lamb waves, the reflections at cracks are extracted by the Hilbert transform. The influence of the crack length and orientation are studied parametrically, and the relations between the proposed damage index and crack length and angle are given based on regression analysis.

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来源期刊
Acoustical Physics
Acoustical Physics 物理-声学
CiteScore
1.60
自引率
50.00%
发文量
58
审稿时长
3.5 months
期刊介绍: Acoustical Physics is an international peer reviewed journal published with the participation of the Russian Academy of Sciences. It covers theoretical and experimental aspects of basic and applied acoustics: classical problems of linear acoustics and wave theory; nonlinear acoustics; physical acoustics; ocean acoustics and hydroacoustics; atmospheric and aeroacoustics; acoustics of structurally inhomogeneous solids; geological acoustics; acoustical ecology, noise and vibration; chamber acoustics, musical acoustics; acoustic signals processing, computer simulations; acoustics of living systems, biomedical acoustics; physical principles of engineering acoustics. The journal publishes critical reviews, original articles, short communications, and letters to the editor. It covers theoretical and experimental aspects of basic and applied acoustics. The journal welcomes manuscripts from all countries in the English or Russian language.
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