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NDE Detection Techniques and Characterization of Aluminum Wires Embedded in Honeycomb Sandwich Composite Panels Using Terahertz Waves

机译:太赫兹波无损检测技术及其在蜂窝夹芯复合板中嵌入铝线的表征

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摘要

For many years, scientists have been aware of the importance of terahertz waves (T-rays), which have now emerged as an NDE (nondestructive evaluation) technique for certain ranges of the electronic spectrum. The present study deals with T-ray scanning techniques of honeycomb sandwich composite panels with a carbon-fiber-reinforced plastic (CFRP) skin as well as the refractive index (>n), and the electrical conductivity (>α) of glass fiber-reinforced plastic (GFRP) composites. For this experiment, the degree of penetration to FRP composites is investigated for the THz transmitted power based on the angle in the electric field (E-field) direction vs. the direction of the unidirectional carbon fibers. Also, when CFRP skin honeycomb sandwich panels are manufactured for use in aerospace applications, aluminum wires are twisted together into the one-sided surface of the honeycomb sandwich panels to protect against thunderstorms. The aluminum wires are partly visible because they are embedded in the CFRP skin on the honeycomb sandwich panels. After finishing work with a paintjob, the wires become invisible. Thus, detecting the aluminum wires is a key issue for product monitoring. Based on a simple resistor model, an optimal scanning method is proposed to determine the preferred scan orientation on the baseline of the E-field in the direction of fibers to evaluate the level of transmission of T-rays according to the frequency bandwidth. Thus, the combination of angles required to detect the aluminum wires embedded with carbon fibers on the surface of the composite panels can be determined.
机译:多年以来,科学家们已经意识到太赫兹波(T射线)的重要性,太赫兹波现在已经作为NDE(无损评估)技术出现在某些电子光谱范围内。本研究涉及碳纤维增强塑料(CFRP)表皮的蜂窝状夹芯复合板的T射线扫描技术以及折射率(> n )和电导率(<玻璃纤维增​​强塑料(GFRP)复合材料的strong>α)。对于此实验,基于电场(电场)方向与单向碳纤维方向的夹角,研究了FHz复合材料对THz传输功率的渗透程度。同样,当制造用于航空航天应用的CFRP蒙皮蜂窝状夹心板时,铝丝会一起绞入蜂窝状夹心板的一侧表面,以防雷暴。铝线部分可见,因为它们嵌入在蜂窝夹芯板上的CFRP蒙皮中。完成绘画工作后,导线变得不可见。因此,检测铝线是产品监控的关键问题。基于简单的电阻器模型,提出了一种最佳扫描方法,以确定在电场方向上沿光纤方向的首选扫描方向,以根据频率带宽评估T射线的传输水平。因此,可以确定检测在复合面板的表面上嵌入有碳纤维的铝线所需的角度的组合。

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