兰姆波
非线性系统
谐波
声学
超声波传感器
多向性
结构健康监测
物理
各向同性
反对称关系
材料科学
波传播
光学
电压
复合材料
量子力学
节点(物理)
数学物理
作者
Shenxin Yin,Huifang Xiao,Caibin Xu,Jishuo Wang,Mingxi Deng,Tribikram Kundu
出处
期刊:Ultrasonics
[Elsevier]
日期:2022-08-01
卷期号:124: 106770-106770
被引量:6
标识
DOI:10.1016/j.ultras.2022.106770
摘要
Using the nonlinear interaction effect between ultrasonic Lamb waves and microcracks to detect and locate microcracks has the advantages of fast detection speed and high sensitivity. In this paper, a method for microcrack localization based on cross-shaped sensor clusters in a plate is proposed by combining nonlinear ultrasonic Lamb wave technology and time difference of arrival (TDOA) technology. The antisymmetric (A0) mode at low frequency is chosen as the primary Lamb wave to simplify the complication of the dispersion and multi-mode properties of Lamb waves. The selected mode pair (A0-s0) weakens the influence of the cumulative growth effect of higher harmonics induced by the inherent material nonlinearity on the microcrack characteristic signals. Pulse inversion technique and cross correlation function are used to extract the TDOAs of the nonlinear characteristic signals including microcrack information. The cross-shaped sensor clusters approach proposed for the first time can achieve reliable and fast microcrack localization without being affected by the duration of the excitation signal, and a priori knowledge of group velocities of primary wave modes or generated harmonics. Experimental and numerical results validate the proposed method in isotropic and anisotropic plates. This paper provides a new idea for nonlinear ultrasonic nondestructive evaluation and structural health monitoring of microcracks in plates.
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