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首页> 外文期刊>IEEE transactions on nanotechnology >Characterization of Carbon-Based Epoxy Nanocomposite Shield for Broadband EMI Shielding Application in X and Ku Bands
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Characterization of Carbon-Based Epoxy Nanocomposite Shield for Broadband EMI Shielding Application in X and Ku Bands

机译:X和Ku带宽带EMI屏蔽应用碳基环氧纳米复合屏蔽的特征

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摘要

Electromagnetic interference (EMI) shielding in the X and Ku bands of electromagnetic spectrum are vital for communication and military applications. This work aims at developing and characterizing nanocomposite shield with two nano fillers- carbon nanotubes (CNT) and carbon nanofibers (CNF) dispersed at various weight combinations for shielding both X and Ku bands at minimum cost. DC conductivity of the prepared CNT-CNF based epoxy nanocomposites obey classical law of percolation theory. AC conductivity follows universal dynamic response (UDR) when CNT concentration is above 0.5wt.%. The rise in permittivity with filler concentration at a particular frequency is more prominent with the increase in CNF concentration. The measurement of shielding effectiveness of the prepared samples demonstrates that maximum shielding obtained is 24 dB and 30 dB in the X and Ku bands respectively and the optimum filler combination is 1wt.%CNT-5wt.%CNF agreeing with the results obtained from characterization. The nanocomposites with higher CNF content exhibit better shielding as compared with higher CNT content owing to the higher aspect ratio of CNF used. The shielding efficiency increases as the frequency band shifts from X to Ku. Absorption loss is the prominent mechanism of shielding in both bands, avoiding the chance for electromagnetic pollution.
机译:电磁频谱X和KU带中的电磁干扰(EMI)屏蔽对于通信和军事应用至关重要。该工作旨在开发和表征具有两个纳米填料 - 碳纳米管(CNT)和碳纳米纤维(CNF)以各种重量组合分散的纳米复合材料屏蔽,用于以最小成本屏蔽X和KU带。基于CNT-CNF的环氧纳米复合材料的DC电导率遵守渗透理论的古典规律。当CNT浓度高于0.5wt时,交流电导率遵循普遍的动态响应(UDR)。%。随着CNF浓度的增加,特定频率的填充浓度的介质浓度的增加更突出。制备样品的屏蔽有效性的测量表明,在X和Ku带中获得的最大屏蔽分别是24dB和30dB,最佳填充物组合为1wt。%CNT-5wt。%CNF同意从表征获得的结果。具有较高CNF含量的纳米复合材料表现出更好的屏蔽,而由于所使用的CNF的较高纵横比而与较高的CNT含量相比。当频带从X到Ku偏移时,屏蔽效率增加。吸收损失是两个带屏蔽的突出机制,避免了电磁污染的机会。

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