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Fabrication and design of electromagnetic wave absorber composed of carbon nanotube-incorporated cement composites

机译:掺碳纳米管水泥复合材料电磁波吸收器的制备与设计

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摘要

In the present study, an electromagnetic (EM) wave absorber was fabricated with a multi-walled carbon nanotube (MWNT)-incorporated cement composite and the absorbing capability of the absorber was assessed. To disperse MWNTs in a cement matrix, composites were fabricated under a low flow condition of the fresh mixture, and silica fume (SF) was added to explore the influence of SF addition on MWNT distribution. The electrical conductivity of the composite was evaluated to examine the MWNT distribution and the complex permittivity was determined to study the EM characteristics of the composite. The conductivity results demonstrated that SF addition of 10 wt% led to the greatest enhancement. Meanwhile, the absorber was designed on the basis of complex permittivity at a frequency point of 9.4 GHz, and SF0-M1.0 type (no SF addition and MWNT content of 1.0 wt%) and SF10-M0.6 type (SF content of 10 wt% and MWNT content of 0.6 wt%) were employed. The experimental assessment of the absorbing capability demonstrated that the -10 dB bandwidths of SF0-M1.0 and SF10-M0.6 type absorbers were 2.5 GHz and 3.2 GHz, respectively. In addition, the absorbing capability derived from the experimental work was compared and validated by means of computational simulation work.
机译:在本研究中,电磁波(EM)吸收器是由掺有多壁碳纳米管(MWNT)的水泥复合材料制成的,并评估了吸收器的吸收能力。为了将MWNTs分散在水泥基体中,在低流量的新鲜混合物条件下制备了复合材料,并添加了硅粉(SF)来探讨SF对MWNT分布的影响。评估复合材料的电导率以检查MWNT分布,并确定复介电常数以研究复合材料的EM特性。电导率结果表明,添加10 wt%的SF导致最大的增强。同时,根据频率在9.4 GHz时的复介电常数,SF0-M1.0型(不添加SF和MWNT含量为1.0 wt%)和SF10-M0.6型(SF含量为6%)设计吸收器。使用10wt%和0.6wt%的MWNT含量。吸收能力的实验评估表明,SF0-M1.0和SF10-M0.6型吸收器的-10 dB带宽分别为2.5 GHz和3.2 GHz。此外,通过计算仿真工作对来自实验工作的吸收能力进行了比较和验证。

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