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Nondestructive imaging of hidden defects in aircraft sandwich composites using terahertz time-domain spectroscopy

机译:使用太赫兹时域光谱法的飞机夹心复合材料隐性缺陷的无损成像

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摘要

Aircraft sandwich composites are superior to ordinary composites and have been largely used in the manufacture of military aircraft. This study attempts to investigate the efficacy of terahertz (THz) time-domain spectroscopy (TDS) imaging technology in detecting hidden defects in aircraft glass fiber (GF) sandwich composites. The defects of various sizes, such as debonding, delamination, and multi-delamination, at different depths in GF A sandwich structure composites with foam core, C-sandwich structure composites with honeycomb core, and sheet-to-sheet cementing structure composites were evaluated. The THz frequency-domain amplitude and time domain amplitude imaging algorithms were used to visualize the defects simulated by ultrathin double-layer Teflon inserts. And the suitable image processing methods which include wavelet-based fusion and multiscale edge representation were employed. With a combination of high-resolution THz C-scan and B-scan imaging, both the horizontal size and location, and the vertical depth and thickness of the defects were obtained in three dimensions. This study experimentally demonstrated that THz imaging technology can clearly detect various hidden defects in aircraft GF sandwich composites through reflection or transmission imaging mode.
机译:飞机夹心复合材料优于普通复合材料,并在大量应用于制造军用飞机。该研究试图研究太赫兹(THz)时域光谱(TDS)成像技术在检测飞机玻璃纤维(GF)夹层复合材料中的隐藏缺陷中的疗效。评估各种尺寸的缺陷,例如剥落,分层和多分层,在GF中的不同深度,具有泡沫芯的泡沫芯,C-夹心结构复合材料,具有蜂窝芯的C-夹心结构复合物,以及片材粘合结构复合材料。 THz频域幅度和时域幅度成像算法用于可视化超薄双层Teflon插入件模拟模拟的缺陷。和包括基于小波的融合和多尺度边缘表示的合适的图像处理方法。利用高分辨率THz C扫描和B扫描成像的组合,在三维中获得水平尺寸和位置,以及缺陷的垂直深度和厚度。本研究通过反射或传输成像模式明确地证明了THz成像技术可以清楚地检测飞机GF夹层复合材料中的各种隐藏缺陷。

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