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Identification of delamination defects through covariance of energy change: numerical modeling

机译:通过能量变化的协方差识别分层缺陷:数值模型

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Delamination is currently a difficult detectable form of damage in composite laminate materials. This paper presents a method to more easily detect delamination damage within composite materials using finite element analysis modeling, through the covariance of energy change. Lamb waves were introduced and recorded through an actuator and sensors made of piezoelectric material. The data were then analyzed through the fast Fourier transform (FFT). Using the data from the FFT, the idea of covariance of energy change was suggested to correlate with defect characteristics. By comparing the covariance of energy change in beams with different delamination sizes, thicknesses, and depths, correlations between the covariance of energy loss and defect characteristics were able to be developed. With these correlations, the severity of these damages was able to be quantified.
机译:目前,分层是复合层压材料中难以检测到的损坏形式。本文提出了一种使用有限元分析模型通过能量变化的协方差更容易地检测复合材料内分层破坏的方法。通过由压电材料制成的致动器和传感器引入并记录兰姆波。然后通过快速傅立叶变换(FFT)分析数据。利用来自FFT的数据,建议能量变化的协方差思想与缺陷特征相关。通过比较具有不同分层大小,厚度和深度的梁中能量变化的协方差,可以建立能量损失与缺陷特征的协方差之间的相关性。通过这些相关性,可以对这些破坏的严重程度进行量化。

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