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Investigation of Fiber Waviness in a Thick Glass Composite Beam Using THz NDE

机译:使用太赫兹无损检测研究厚玻璃复合梁中的纤维波纹度

摘要

Fiber waviness in laminated composite material is introduced during manufacture because of uneven curing, resin shrinkage, or ply buckling caused by bending the composite lay-up into its final shape prior to curing. The resulting waviness has a detrimental effect on mechanical properties, therefore this condition is important to detect and characterize. Ultrasonic characterization methods are difficult to interpret because elastic wave propagation is highly dependent on ply orientation and material stresses. By comparison, the pulsed terahertz response of the composite is shown to provide clear indications of the fiber waviness. Pulsed Terahertz NDE is an electromagnetic inspection method that operates in the frequency range between 300 GHz and 3 THz. Its propagation is influenced by refractive index variations and interfaces. This work applies pulsed Terahertz NDE to the inspection of a thick composite beam with fiber waviness. The sample is a laminated glass composite material approximately 15mm thick with a 90-degree bend. Terahertz response from the planar section, away from the bend, is indicative of a homogeneous material with no major reflections from internal plies, while the multiple reflections at the bend area correspond to the fiber waviness. Results of these measurements are presented for the planar and bend areas.
机译:层压复合材料中的纤维波纹是在制造过程中引入的,这是由于固化之前将复合材料叠层弯曲成其最终形状而导致的固化不均匀,树脂收缩或层屈曲。产生的波纹会对机械性能产生不利影响,因此该条件对于检测和表征很重要。超声波表征方法难以解释,因为弹性波的传播高度依赖于层定向和材料应力。相比之下,复合材料的脉冲太赫兹响应显示出纤维波纹度的清晰指示。脉冲太赫兹NDE是一种电磁检查方法,其工作频率范围为300 GHz至3 THz。它的传播受折射率变化和界面的影响。这项工作将脉冲太赫兹NDE用于检查具有纤维波纹的厚复合梁。样品是夹层玻璃复合材料,厚度约15mm,弯曲90度。远离弯曲部分的平面部分的太赫兹响应表示均匀的材料,内部层没有大的反射,而弯曲区域的多次反射对应于纤维的波纹度。这些测量的结果显示在平面和弯曲区域。

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    Anastasi Robert F.;

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  • 年度 2008
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