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Damage Imaging in Composite Laminates Using Phase Reversal Method

机译:使用相位反转方法复合层压板中的损伤成像

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A novel Lamb wave-based Phase Reversal Method (PRM) for damage imaging in composite laminates is proposed. The phase spectrum information of the scattering waves reflected from the defect was analyzed. The reflected waves were reconstructed by reversing the phase angle along the propagation path using Inverse Fourier Transform. Then the damage index was defined by the properties of the reconstructed waves. The anisotropic characters of the composite laminates will not affect the reconstruction of the wave form, because of the phase reversal process is applied along each propagation path, which makes the PRM is a proper and effective method for damage imaging for composite laminates. A finite element composite model with damage was simulated in numerical analysis, and the Lamb wave was generated and reflected by the defect. The phase spectrums of the reflected signals received by a pair of neighbor sensors were compared and reversed to detect the damage. In the absence of the baseline data and the parameters of the composite laminates, including dispersion characteristics and anisotropy, we successfully imaged the damage area using PRM algorithm. This result indicated a great potential of the novel proposed method in damage imaging and structural health monitoring for composite laminates.
机译:提出了一种用于复合层压板中的损伤成像的新型羊振波相逆转法(PRM)。分析了从缺陷反射的散射波的相谱信息。通过使用逆傅里叶变换反转传播路径的相位角来重建反射波。然后由重建波的属性定义了损伤索引。由于相位反相过程,复合层压板的各向异性特性不会影响波形的重建,这沿着每个传播路径施加,这使得PRM是用于复合层压板的损伤成像的适当有效的方法。在数值分析中模拟具有损坏的有限元复合模型,并通过缺陷产生并反射羊波。比较一对邻传感器接收的反射信号的相位谱并反转以检测损坏。在没有基线数据和复合层压板的参数的情况下,包括色散特性和各向异性,我们使用PRM算法成功地成功地成了损伤区域。该结果表明了该损伤成像和结构健康监测中的新型提出方法的巨大潜力。

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