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EMI SHIELDING EFFECTIVENESS OF CARBON NANOTUBE BUCKYPAPER NANOCOMPOSITE/FOAM SANDWICH STRUCTURES

机译:EMI屏蔽碳纳米管柱纳米复合材料/泡沫夹层结构的施用效果

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Carbon nanotubes are known for their exceptional mechanical, electrical and thermal properties. Nanotubes' electrical properties will play a vital role in many critical applications, with EMI shielding as one of the more important applications. In this study, the authors examined the effectiveness of SWNT BuckyPaper films' electromagnetic interference (EMI) shielding. Individual BuckyPaper films used in the research were only 15~25μm thick with an area density of 0.0705 oz./ft{sup}2 or 21.5g/m{sup}2. Highly conductive SWNT BuckyPapers films were incorporated into foam sandwich structures. EMI tests revealed that the foam structures with a surface skin of two layers of randomly oriented BuckyPaper films achieved attenuation as great as 26 dB at 455-500 MHz or an average of 21 dB across the entire frequency range, compared to the pure foam control panel. At frequency ranges of 4GHz-18GHz, the foam sandwich samples with three layers SWNT BuckyPapers showed an EMI attenuation as high as 30dB across the entire frequency range. The results show that SWNT BuckyPaper materials offer a very promising lightweight technical solution for EMI shielding application. BuckyPapers can also easily be incorporated into conventional composite structures, which is critical for potential large scale application of SWNTs for multifunctional composites and structures.
机译:碳纳米管以其特殊的机械,电气和热性能而闻名。 Nanotubes的电气性质将在许多关键应用中发挥重要作用,EMI屏蔽为更重要的应用之一。在这项研究中,作者检测了SWNT Buckypaper薄膜电磁干扰(EMI)屏蔽的有效性。在研究中使用的单个鼠李粥蛋白胶片仅为15〜25μm厚,面积密度为0.0705盎司/架} 2或21.5g / m {sup} 2。高导电的SWNT碎片膜膜掺入泡沫夹层结构中。 EMI测试显示,与纯泡沫控制面板相比,具有两层随机定向的鼠李膜的表面皮肤的表面皮肤的表面皮肤,在455-500MHz的情况下,平均为21dB,平均为21dB,相比,相比纯泡沫控制面板。在4GHz-18GHz的频率范围内,带有三层SWNT碎片涂料的泡沫夹层样品显示出在整个频率范围内高达30dB的EMI衰减。结果表明,SWNT Buckypaper材料为EMI屏蔽应用提供了非常有前途的轻量级技术解决方案。还可以容易地结合到常规复合结构中,这对于多功能复合材料和结构的潜在大规模应用是至关重要的。

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