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Nondestructive evaluation of GFRP composite including multi-delamination using THz spectroscopy and imaging

机译:使用THz光谱和成像技术对GFRP复合材料进行无损评估,包括多层分析

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We utilize a fiber-coupled terahertz time-domain spectroscopy system (THz-TDS) based on photoconductive antennas to visualize multi-delamination and their thickness in a glass-fiber-reinforced polymer (GFRP) composite plate. We simulate a hidden multi-delamination by inserting a Teflon film in the GFRP composite plate that is fabricated using the vacuum-assisted resin transfer molding (VARTM) process. Reflected or transmitted terahertz (THz) waves are recorded from GFRP samples mounted on the x-y linear motorized stage during the investigation. The x-y linear motorized stage is driven in steps of 0.2 mm, thereby allowing us to scan the sample. We examine and compare the performances of the THz time-domain visualization (TTV) and THz frequency-domain visualization (TFV) algorithms to evaluate their characteristics for the visualization of defects. The thickness of the GFRP sample and multi-delamination is estimated using the reflection geometry method. Finally, we confirm that the hidden multi-delamination of the GFRP sample has been successfully visualized in the B-and C-scans. In addition, the thicknesses of the GFRP sample and the simulated delamination as compared with the experimental values exhibit a close consistency.
机译:我们利用基于光电导天线的光纤耦合太赫兹时域光谱系统(THz-TDS)来可视化玻璃纤维增​​强聚合物(GFRP)复合板中的多层结构及其厚度。我们通过在使用真空辅助树脂传递模塑(VARTM)工艺制造的GFRP复合板上插入特氟龙薄膜来模拟隐藏的多层结构。在研究过程中,从安装在x-y线性电动平台上的GFRP样品记录了反射或透射的太赫兹(THz)波。 x-y线性电动载物台以0.2 mm的步长驱动,从而使我们能够扫描样品。我们检查并比较了THz时域可视化(TTV)和THz频域可视化(TFV)算法的性能,以评估其特征以进行缺陷可视化。 GFRP样品的厚度和多层结构是使用反射几何方法估算的。最后,我们确认GFRP样品的隐藏多重分层已在B扫描和C扫描中成功可视化。另外,与实验值相比,GFRP样品的厚度和模拟的分层显示出紧密的一致性。

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