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Vibration-based spatial damage identification in honeycomb-core sandwich composite structures using wavelet analysis

机译:基于小波分析的蜂窝芯夹芯复合结构基于振动的空间损伤识别

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摘要

Due to the growing interest to apply sandwich composites in various industrial fields, more and more attention is paid to the development novel non-destructive testing (NDT) techniques, which will be suitable for detection, precise localization and identification of damages characteristic for these materials. In this study the author proposed novel approach of two-step damage detection and evaluation, which consisted of the non-contact vibration analysis and extraction of modal shapes of vibration and then an advanced signal processing algorithm, which is based on 2D signal decomposition using 2D wavelet transform (WT) with B-spline wavelets of fractional order. The damage identification procedure was performed on the honeycomb-core sandwich composite plates, which consisted of all types of damages typical for such structures during their operation (delaminations, cracks of a core and face sheets, impact damages, etc.). Results show that the proposed method can successfully detect, localize and identify the different types of damages.
机译:由于在各种工业领域中应用三明治复合材料的兴趣日益浓厚,因此越来越多地关注开发新颖的无损检测(NDT)技术,该技术将适合于检测,精确定位和识别这些材料的损伤特征。在这项研究中,作者提出了一种新的两步损伤检测和评估方法,该方法包括非接触式振动分析和振动模态形状的提取,然后是一种基于2D信号分解的高级信号处理算法,该算法使用2D分解。分数阶B样条小波的小波变换(WT)。损伤识别程序在蜂窝芯夹心复合材料板上执行,该程序包括此类结构在运行过程中典型的所有类型的损伤(分层,芯和面板的裂纹,冲击损伤等)。结果表明,该方法可以成功地检测,定位和识别不同类型的损害。

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