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Synthetic aperture imaging of contact acoustic nonlinearity to visualize the closing interfaces using tone-burst ultrasonic waves

机译:接触声非线性的合成孔径成像,使用音爆超声波可视化闭合界面

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Contact acoustic nonlinearity (CAN) effect was visualized by synthetic aperture focusing technique (SAFT) via a signal-processing method for acoustic nonlinearity imaging. The proposed signal-processing technique, named Synthetic Aperture Imaging of Acoustic Nonlinearity (SAIAN), allows the SAFT to visualize CAN that is difficult to be visualized by linear ultrasonic imaging. Using the SAIAN algorithm, the fundamental and second-order harmonic frequency components are extracted from the tone-burst wave signal and then these component signals are transformed into pulse-like signals. From the pulse-like signals, the CAN parameter signals can be obtained in the form of pulses, which allows CAN to be visualized by SAFT. In order to verify the effectiveness of the SAIAN, the nonlinear ultrasonic measurements using tone-burst waves were conducted to visualize closing interfaces. As a result, CAN effect appeared at partially closed part of a contacting interface in the images of the CAN signals converted by the SAIAN; on the contrary, the CAN feature was not shown in linear ultrasonic images based on the fundamental frequency component. These results support that the SAIAN is a useful signal processing for acoustic nonlinearity visualization that improves the probability of detection of closing interfaces and the accuracy in crack sizing. (C) 2018 Elsevier Ltd. All rights reserved.
机译:接触声非线性(CAN)效果通过合成孔径聚焦技术(SAFT)通过声非线性成像的信号处理方法可视化。所提出的信号处理技术称为声学非线性合成孔径成像(SAIAN),它使SAFT能够可视化难以通过线性超声成像可视化的CAN。使用SAIAN算法,从音爆波信号中提取基波和二阶谐波频率分量,然后将这些分量信号转换为脉冲状信号。从脉冲状信号中,可以脉冲形式获得CAN参数信号,从而可以通过SAFT可视化CAN。为了验证SAIAN的有效性,进行了使用音爆波的非线性超声测量以可视化闭合界面。结果,在SAIAN转换的CAN信号的图像中,CAN效应出现在接触界面的部分闭合部分;相反,基于基本频率分量的线性超声图像中未显示CAN功能。这些结果表明,SAIAN是用于声学非线性可视化的有用信号处理,可以提高检测闭合界面的可能性和裂缝尺寸的准确性。 (C)2018 Elsevier Ltd.保留所有权利。

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