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Preparation of macroporous rayon-based activated carbon fiber felt screen/epoxy composites and their microwave absorption properties

机译:大孔人造丝基活性炭纤维毡/环氧树脂复合材料的制备及其微波吸收性能

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Microwave absorbing materials containing macroporous rayon-based activated carbon fiber (ACF) felt screens were successfully prepared. Microporous ACF felts were firstly marinated in the aqueous solution of NaH2PO4, and then were activated by steam at different temperatures to produce macropores on the surface of ACF. By scanning electron microscopy, we found more macropores generated with the increasing activation temperature, while the resulting macroporous ACF felts possessed larger specific surface areas determined by BET method. Furthermore, ACF felt screens were prepared and then were compounded with epoxy matrix. The microwave absorbing properties of these composites were investigated by vector network analyzer. The results showed that the composites containing the macroporous ACF felts screens rather than microporous ones performed good microwave absorbing properties. Especially for those with ACF felts activated at 750°C, the frequency range, corresponding to the reflection loss below -10dB, covered 9.1 to 18GHz, and the maximum reflection loss achieved -31.5dB. It could be concluded that the specific surface area and the macroporous structure of ACF felts play important roles in the microwave absorption properties of the ACF felt screen/epoxy composites.
机译:成功地制备了含有大孔人造丝基活性炭纤维(ACF)毛毡屏的吸波材料。首先将微孔ACF毡浸入NaH2PO4水溶液中,然后在不同温度下通过蒸汽活化,以在ACF表面产生大孔。通过扫描电子显微镜,我们发现随着活化温度的升高,产生了更多的大孔,而所得的大孔ACF毡具有更大的比表面积,这是通过BET法测定的。此外,制备了ACF毡网,然后将其与环氧基质复合。用矢量网络分析仪研究了这些复合材料的微波吸收性能。结果表明,含有大孔ACF毡而不是微孔毡的复合材料具有良好的微波吸收性能。尤其是对于那些在750°C激活ACF毡的人来说,对应于-10dB以下反射损耗的频率范围覆盖9.1至18GHz,最大反射损耗达到-31.5dB。可以得出结论,ACF毡的比表面积和大孔结构在ACF毡筛网/环氧树脂复合材料的微波吸收性能中起着重要作用。

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