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首页> 外文期刊>Chemistry central journal >The impact of different multi-walled carbon nanotubes on the X-band microwave absorption of their epoxy nanocomposites
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The impact of different multi-walled carbon nanotubes on the X-band microwave absorption of their epoxy nanocomposites

机译:不同的多壁碳纳米管对其环氧纳米复合材料在X波段微波吸收的影响

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Background Carbon nanotube (CNT) characteristics, besides the processing conditions, can change significantly the microwave absorption behavior of CNT/polymer composites. In this study, we investigated the influence of three commercial multi-walled CNT materials with various diameters and length-to-diameter aspect ratios on the X-band microwave absorption of epoxy nanocomposites with CNT contents from 0.125 to 2 wt%, prepared by two dispersion methods, i.e. in solution with surfactant-aiding and via ball-milling. Results The laser diffraction particle size and TEM analysis showed that both methods produced good dispersions at the microscopic level of CNTs. Both a high aspect ratio resulting in nanotube alignment trend and good infiltration of the matrix in the individual nanotubes, which was indicated by high Brookfield viscosities at low CNT contents of CNT/epoxy dispersions, are important factors to achieve composites with high microwave absorption characteristics. The multi-walled carbon nanotube (MWCNT) with the largest aspect ratio resulted in composites with the best X-band microwave absorption performance, which is considerably better than that of reported pristine CNT/polymer composites with similar or lower thicknesses and CNT loadings below 4 wt%. Conclusions A high aspect ratio of CNTs resulting in microscopic alignment trend of nanotubes as well as a good level of micro-scale CNT dispersion resulting from good CNT-matrix interactions are crucial to obtain effective microwave absorption performance. This study demonstrated that effective radar absorbing MWCNT/epoxy nanocomposites having small matching thicknesses of 2–3 mm and very low filler contents of 0.25-0.5 wt%, with microwave energy absorption in the X-band region above 90% and maximum absorption peak values above 97%, could be obtained via simple processing methods, which is promising for mass production in industrial applications.
机译:背景技术碳纳米管(CNT)的特性,除了工艺条件外,还可以显着改变CNT /聚合物复合材料的微波吸收行为。在这项研究中,我们研究了三种不同直径和长径比的市售多壁CNT材料对CNT含量为0.125%至2 wt%的环氧纳米复合材料在X波段微波吸收的影响,该方法由两种制备分散方法,即在具有表面活性剂辅助的溶液中和通过球磨进行分散。结果激光衍射粒度和TEM分析表明,两种方法均在CNT的微观水平上产生了良好的分散性。高纵横比导致纳米管排列趋势以及基质在单个纳米管中的良好渗透,这是在低碳含量的CNT /环氧分散体中获得高布鲁克菲尔德粘度所表明的,这也是获得具有高微波吸收特性的复合材料的重要因素。具有最大长径比的多壁碳纳米管(MWCNT)导致复合材料具有最佳的X波段微波吸收性能,这比报道的原始碳纳米管/聚合物复合材料的厚度或相似或更低且碳纳米管负载量低于4时要好得多。重量%。结论高纵横比的CNT导致纳米管的微观排列趋势以及良好的CNT与基质之间的相互作用产生的微米级CNT分散水平对于获得有效的微波吸收性能至关重要。这项研究表明,有效的雷达吸收MWCNT /环氧纳米复合材料具有2-3 mm的较小匹配厚度和0.25-0.5 wt%的极低填料含量,并且X波段区域的微波能量吸收超过90%,并且最大吸收峰值可以通过简单的加工方法获得高于97%的纯度,这有望在工业应用中进行批量生产。

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