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The relationship between electromagnetic absorption properties and cell structure of poly(methyl methacrylate)/multi-walled carbon nanotube composite foams

机译:聚甲基丙烯酸甲酯/多壁碳纳米管复合泡沫的电磁吸收性能与孔结构的关系

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The understanding of the effect of cell structure on the electromagnetic absorption properties can help to optimize foam structures for different applications. In this research, foams with different air volume percent, spherical and polygonal cell shapes, cell densities in the range of 104-1010 cell/cm(3) and cell sizes ranging from 2.8 to 370.3 mu m are produced using an automatic and controllable supercritical CO2 foaming system. The results showed that foaming of PMMA/MWCNT composites resulted in a 60% reduction in electromagnetic reflection and a 96% increase in specific electromagnetic absorption. The percolation threshold of foams with polygonal cell shape is found to occur at higher MWCNT loading than spherical cell shapes. Electromagnetic reflection is independent of cell density and cell size, while absorption was improved for about 34% with increasing cell density and decreasing cell size, indicating an enhancement of the multiple reflection mechanism. (C) 2016 Elsevier Ltd. All rights reserved.
机译:对泡孔结构对电磁吸收性能的影响的了解有助于优化泡沫塑料结构以适应不同的应用。在这项研究中,使用自动可控超临界技术生产了具有不同空气体积百分比,球形和多边形气泡形状,气泡密度在104-1010气泡/ cm(3)和气泡尺寸从2.8到370.3微米不等的泡沫二氧化碳发泡系统。结果表明,PMMA / MWCNT复合材料的发泡导致电磁反射减少60%,比电磁吸收增加96%。发现具有多边形孔形状的泡沫的渗滤阈值发生在比球形孔形状更高的MWCNT负载下。电磁反射与细胞密度和细胞大小无关,而随着细胞密度增加和细胞大小减小,吸收率提高了约34%,表明多重反射机制得到了增强。 (C)2016 Elsevier Ltd.保留所有权利。

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