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Non-destructive testing of graphene/epoxy composites using THz waves

机译:使用太赫兹波对石墨烯/环氧树脂复合材料进行无损检测

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In earlier experiments [1] we found there was significant transmission of THz radiation through carbon-fiber enforced composites, despite that fact that the dc conductivity of the carbon fibers is expected to be good and hence should prevent penetration of electro-magnetic radiation. To study the relationship between absorption of THz radiation and electrical conductivity we performed measurements on samples with different concentrations of graphene in an epoxy matrix. We observed an increased absorption of THz radiation with increased graphene concentration. Our conductivity measurements (simple transverse DC measurements using tin foil as electrodes that cover the two sample surfaces) showed the typical increase of several orders of magnitude with graphene concentration. Although both the conductivity and the THz absorption increase with graphene concentration, there is no direct cause-and-effect relation between the two quantities. Careful analysis shows that even the highest dc conductivity values cannot explain even the lowest observed values for the THz absorption coefficient.
机译:在较早的实验中[1],我们发现通过碳纤维增强复合材料可实现显着的太赫兹辐射传输,尽管事实证明碳纤维的直流电导率良好,因此应能防止电磁辐射的穿透。为了研究太赫兹辐射吸收与电导率之间的关系,我们对环氧基质中不同石墨烯浓度的样品进行了测量。我们观察到随着石墨烯浓度的增加,太赫兹辐射的吸收也增加了。我们的电导率测量(使用锡箔作为覆盖两个样品表面的电极进行的简单横向DC测量)表明,石墨烯浓度通常会增加几个数量级。尽管电导率和太赫兹吸收率均随石墨烯浓度的增加而增加,但这两个量之间没有直接的因果关系。仔细的分析表明,即使最高的直流电导率值也无法解释太赫兹吸收系数的最低观测值。

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