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首页> 外文期刊>Journal of Sound and Vibration >Mode-mismatching enhanced disbond detection using material nonlinearity in guided waves at low frequency
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Mode-mismatching enhanced disbond detection using material nonlinearity in guided waves at low frequency

机译:在低频下使用导向波的材料非线性的模式 - 不匹配增强禁用检测

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Disbond defect is a critical concern for the integrity of adhesively bonded engineering structures, and its characterization using ultrasonic guided waves (UGW)-based methods, suffers from the contradiction of multiple wave modes co-excitation at high frequency and poor sensitivity at low frequency. With this concern, this study addresses an investigation of disbond-disturbed nonlinearity in ultrasonic guided waves (UGWs) at low frequency, and on this basis, a novel disbond detection method is developed featuring enhancement by the mode-mismatching between fundamental and second-order harmonic wave (SOHW) at a specific mode-frequency combination. First, when the probing UGWs at low frequency are excited in adhesive bonded waveguide (aluminum-epoxy-aluminum), the SOHW in intact waveguides and the disbond region are scrutinized from analytical and numerical perspectives. It is observed that in the case of mode-mismatching for UGW of a specific mode-frequency combination, SOHW is remarkably suppressed in intact regions, whereby leading to the predominance of the disbond-induced SOHW. Then, on this basis, a nonlinearity-based method using the UGW with specific mode-frequency combination is developed to outstand the disbond defect. Finally, the experimental evaluation of disbonds well validates the effectiveness of the proposed method, in which three disbond defects with various lengths (10 mm, 20 mm, and 40 mm) are identified and quantitatively evaluated using the optimal UGW mode-frequency combination. (C) 2020 Elsevier Ltd. All rights reserved.
机译:剥离缺陷是粘接工程结构完整性的一个关键问题,基于超声导波(UGW)的方法对其进行表征时,存在高频多模式共激励和低频低灵敏度的矛盾。基于这一考虑,本研究对低频超声导波(UGW)中的脱胶干扰非线性进行了研究,并在此基础上,开发了一种新的脱胶检测方法,该方法通过特定模式频率组合下基波和二阶谐波(SOHW)之间的模式失配来增强脱胶检测。首先,当低频探测UGW在黏结波导(铝-环氧-铝)中激发时,从分析和数值的角度考察了完整波导和剥离区域中的SOHW。观察到,在特定模式频率组合的UGW模式失配的情况下,SOHW在完整区域被显著抑制,从而导致脱胶诱导的SOHW占主导地位。然后,在此基础上,发展了一种基于非线性的方法,使用特定模频组合的UGW来突出剥离缺陷。最后,剥离的实验评估很好地验证了所提出方法的有效性,其中三个不同长度(10 mm、20 mm和40 mm)的剥离缺陷被识别,并使用最佳UGW模式频率组合进行定量评估。(C) 2020爱思唯尔有限公司版权所有。

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