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利用PZT诱导兰姆波的调制检测金属中的微裂纹

Detection of Micro-Cracks in Metals Using Modulation of PZT-Induced Lamb Waves.

作者信息

Lee Sang Eon, Hong Jung-Wuk

机构信息

Department of Civil and Environmental Engineering, Korea Advanced Institute of Science and Technology, Daejeon 34141, Korea.

出版信息

Materials (Basel). 2020 Aug 29;13(17):3823. doi: 10.3390/ma13173823.

Abstract

The ultrasonic modulation technique, developed by inspecting the nonlinearity from the interactions of crack surfaces, has been considered very effective in detecting fatigue cracks in the early stage of the crack development due to its high sensitivity. The wave modulation is the frequency shift of a wave passing through a crack and does not occur in intact specimens. Various parameters affect the modulation of the wave, but quantitative analysis for each variable has not been comprehensively conducted due to the complicated interaction of irregular crack surfaces. In this study, specimens with a constant crack width are manufactured, and the effects of various excitation parameters on modulated wave generation are analyzed. Based on the analysis, an effective crack detection algorithm is proposed and verified by applying the algorithm to fatigue cracks. For the quantitative analysis, tests are repeatedly conducted by varying parameters. As a result, the excitation intensity shows a strong linear relationship with the amount of modulated waves, and the increase of modulated wave is expected as crack length increases. However, the change in the dynamic characteristics of the specimen with the crack length is more dominant in the results. The excitation frequency is the most dominant variable to generate the modulated waves, but a direct correlation is not observed as it is difficult to measure the interaction of crack surfaces. A numerical analysis technique is developed to accurately simulate the movement and interaction of the crack surface. The crack detection algorithm, improved by using the observations from the quantitative analyses, can distinguish the occurrence of modulated waves from the ambient noises, and the state of the specimens is determined by using two nonlinear indexes.

摘要

通过检查裂纹表面相互作用的非线性而开发的超声调制技术,因其高灵敏度,在检测裂纹发展早期的疲劳裂纹方面被认为非常有效。波调制是波通过裂纹时的频率偏移,在完好的试样中不会出现。各种参数会影响波的调制,但由于不规则裂纹表面的复杂相互作用,尚未对每个变量进行全面的定量分析。在本研究中,制造了具有恒定裂纹宽度的试样,并分析了各种激励参数对调制波产生的影响。基于该分析,提出了一种有效的裂纹检测算法,并通过将该算法应用于疲劳裂纹进行了验证。为了进行定量分析,通过改变参数反复进行试验。结果表明,激励强度与调制波的数量呈现出很强的线性关系,并且随着裂纹长度的增加,调制波预计会增加。然而,在结果中,试样随裂纹长度的动态特性变化更为显著。激励频率是产生调制波的最主要变量,但由于难以测量裂纹表面的相互作用,未观察到直接的相关性。开发了一种数值分析技术,以准确模拟裂纹表面的运动和相互作用。通过使用定量分析的观察结果改进后的裂纹检测算法,可以从环境噪声中区分调制波的出现,并使用两个非线性指标确定试样的状态。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fea8/7504035/e3a7f9e3c447/materials-13-03823-g001.jpg

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