Design of lossy dielectric polymer nanocomposite alternating A-B multilayers for absorption-dominated EMI shielding in the X-band regime

IF 8.1 2区 材料科学 Q1 ENGINEERING, MANUFACTURING Composites Part A: Applied Science and Manufacturing Pub Date : 2025-01-12 DOI:10.1016/j.compositesa.2025.108715
Frederik Van Loock , Pramod Ravichandran , Xiangmeng Li , Patrick D. Anderson , Ruth Cardinaels
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Abstract

The role of permittivity mismatch and of individual layer thickness on the electromagnetic interference (EMI) shielding performance of lossy dielectric polymer nanocomposite multilayer shields is explored via a combined theoretical and experimental approach. The A-B multilayer shields comprise of two or more alternating layers of low and high permittivity facilitated by alternating the filler concentration. A parametric study based on a transfer matrix model is conducted making use of permittivity measurement data on nanocomposites of poly(methyl methacryclate) (PMMA) with carbon nanotubes (CNTs). Theoretical insights are confirmed via an experimental and numerical finite element case study on PMMA-CNT A-B multilayer stacks in a waveguide. The case study highlights the trade-off between absorption-based shielding and high shielding effectiveness. For a given total shield thickness, the shielding performance becomes independent of the number of layers when the individual layer thickness is less than the skin depth of the composite material in the high permittivity layer. Moreover, to obtain absorption-based shielding, less but thicker layers, like a bilayer, can be advantageous. For instance, we demonstrate that a 4 mm thick bilayer with a 1 wt% to 7 wt% CNT concentration mismatch exhibits absorption-based shielding with a shielding effectiveness close to 40 dB within the X-band frequency regime.

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损耗介电聚合物纳米复合材料x波段吸收主导电磁干扰屏蔽的A-B交变多层设计
通过理论与实验相结合的方法,探讨了介电常数失配和各层厚度对损耗介质聚合物纳米复合多层屏蔽材料电磁干扰屏蔽性能的影响。所述A-B多层屏蔽包括两个或多个交替的低介电常数和高介电常数层,通过交替填料浓度来促进。利用碳纳米管(CNTs)与聚甲基丙烯酸甲酯(PMMA)纳米复合材料的介电常数测量数据,进行了基于传递矩阵模型的参数化研究。通过对波导中PMMA-CNT a - b多层堆叠的实验和数值有限元案例研究证实了理论见解。案例研究强调了基于吸收的屏蔽和高屏蔽效率之间的权衡。对于一定的总屏蔽厚度,当各层厚度小于复合材料在高介电常数层中的蒙皮深度时,屏蔽性能与层数无关。此外,为了获得基于吸收的屏蔽,更少但更厚的层,如双层,可能是有利的。例如,我们证明了4毫米厚的双层碳纳米管浓度不匹配为1 wt%至7 wt%时,在x波段频率范围内具有接近40 dB的屏蔽效果。
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来源期刊
Composites Part A: Applied Science and Manufacturing
Composites Part A: Applied Science and Manufacturing 工程技术-材料科学:复合
CiteScore
15.20
自引率
5.70%
发文量
492
审稿时长
30 days
期刊介绍: Composites Part A: Applied Science and Manufacturing is a comprehensive journal that publishes original research papers, review articles, case studies, short communications, and letters covering various aspects of composite materials science and technology. This includes fibrous and particulate reinforcements in polymeric, metallic, and ceramic matrices, as well as 'natural' composites like wood and biological materials. The journal addresses topics such as properties, design, and manufacture of reinforcing fibers and particles, novel architectures and concepts, multifunctional composites, advancements in fabrication and processing, manufacturing science, process modeling, experimental mechanics, microstructural characterization, interfaces, prediction and measurement of mechanical, physical, and chemical behavior, and performance in service. Additionally, articles on economic and commercial aspects, design, and case studies are welcomed. All submissions undergo rigorous peer review to ensure they contribute significantly and innovatively, maintaining high standards for content and presentation. The editorial team aims to expedite the review process for prompt publication.
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