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首页> 外文期刊>Journal of Infrared, Millimeter and Terahertz Waves >Enhanced Terahertz Imaging of Small Forced Delamination in Woven Glass Fibre-reinforced Composites with Wavelet De-noising
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Enhanced Terahertz Imaging of Small Forced Delamination in Woven Glass Fibre-reinforced Composites with Wavelet De-noising

机译:小波消噪的增强玻璃纤维增​​强复合材料中小强迫分层的太赫兹成像

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Terahertz (THz) reflection imaging is applied to characterize a woven glass fibre-reinforced composite laminate with a small region of forced delamination. The forced delamination is created by inserting a disk of 25- mu m-thick Upilex film, which is below the THz axial resolution, resulting in one featured echo with small amplitude in the reflected THz pulses. Low-amplitude components of the temporal signal due to ambient water vapor produce features of comparable amplitude with features associated with the THz pulse reflected off the interfaces of the delamination and suppress the contrast of THz C- and B-scans. Wavelet shrinkage de-noising is performed to remove water-vapor features, leading to enhanced THz C- and B-scans to locate the delamination in three dimensions with high contrast.
机译:太赫兹(THz)反射成像用于表征玻璃纤维增​​强的复合层压板,该层压板具有小面积的强制分层。强制分层是通过插入一张25微米厚的Upilex薄膜光盘来实现的,该薄膜低于THz轴向分辨率,从而在反射的THz脉冲中产生一个具有较小幅度的特征回波。由于周围水汽而引起的时间信号的低幅度分量产生了与幅度可比的特征,具有与从分层界面反射的太赫兹脉冲相关的特征,并抑制了太赫兹C扫描和B扫描的对比度。进行小波收缩去噪以去除水汽特征,从而增强THz C和B扫描,以高对比度在三个维度上定位分层。

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