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Multi-Walled Carbon Nanotubes Composites for Microwave Absorbing Applications

机译:用于微波吸收应用的多壁碳纳米管复合材料

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摘要

The response of materials to impinging electromagnetic waves is mainly determined by their dielectric (complex permittivity) and magnetic (complex permeability). In particular, radar absorbing materials are characterized by high complex permittivity (and eventually large values of magnetic permeability), Indeed, energy dissipation by dielectric relaxation and carrier conduction are principally responsible for diminishing microwave radiation reflection and transmission in non-magnetic materials. Therefore, the scientific and technological community has been investigating lightweight composites with high dielectric permittivity in order to improve the microwave absorption (i.e., radar cross-section reduction) in structural materials for the aerospace industry. Multiwalled carbon nanotubes films and their composites with different kind of polymeric resins are regarded as promising materials for radar absorbing applications because of their high permittivity. Nanocomposites based on commercial multi-wall carbon nano-tube (MWCNT) fillers dispersed in an epoxy resin matrix were fabricated. The morphology of the filler was analyzed by Field emission scanning electron microscopy (FESEM) and Raman spectroscopy, while the complex permittivity and the radiation reflection coefficient of the composites was measured in the radio frequency range. The reflection coefficient of a single-layer structure backed by a metallic plate was simulated based on the measured permittivity. Simulation achievements were compared to the measured reflection coefficient. Besides, the influence of morphological MWCNT parameters (i.e., aspect ratio and specific surface area) on the reflection coefficient was evaluated. Results verify that relatively low weight percent of MWCNTs are suitable for microwave absorption applications when incorporated into polymer matrixes (i.e., epoxy resin).
机译:材料对冲击电磁波的响应主要由它们的电介质(复杂介电常数)和磁性(复杂渗透率)决定。特别地,雷达吸收材料的特征在于具有高复杂的介电常数(并且最终的磁导率值),实际上,通过介电松弛和载流子传导的能量耗散主要是负责微波辐射反射和在非磁性材料中传递的透明。因此,科技界一直在研究具有高介电常数的轻质复合材料,以改善航空航天工业结构材料中的微波吸收(即雷达横截面)。具有不同种类的聚合物树脂的多壁碳纳米管膜及其复合材料被认为是由于其高介电常数而被视为雷达吸收应用的有希望的材料。制造基于商业多壁碳纳米管(MWCNT)填料的纳米复合材料制备分散在环氧树脂基质中。通过现场发射扫描电子显微镜(FESEM)和拉曼光谱分析填料的形态,而在射频范围内测量复合材料的复合介电常数和辐射反射系数。基于测量的介电常数模拟金属板背包的单层结构的反射系数。将仿真成果与测量的反射系数进行比较。此外,评估了形态MWCNT参数(即纵横比和比表面积)对反射系数的影响。结果验证相对低的重量%的MWCNTS适用于掺入聚合物基质(即环氧树脂)中时适用于微波吸收应用。

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