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Design and development of advanced BaTiO_3/MWCNTs/PVDF multi-layered systems for microwave applications

机译:用于微波应用的高级BATIO_3 / MWCNT / PVDF多层系统的设计与开发

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摘要

Development of absorbing materials at microwaves is of great interest in electronic and military applications, tuning their electromagnetic (EM) properties by varying their composition. In this paper, composite films based on polyvinylidene fluoride (PVDF), barium titanate (BaTiO3) nanoparticles and/or multiwalled carbon nanotubes (MWCNTs), were prepared. The innovative idea is to use strong dielectric (BaTiO3) and conducive (MWCNTs) fillers to tune the complex permittivity of the resulting material at microwaves (8.2-12.4 GHz). Moreover, on the basis of EM characterization, specific compositions were selected to produce multi-layered slabs by film stacking, exploiting the results of a numerical simulation, which provided information about the required compositions and thicknesses, and the order of the different layers. The designed slabs were realised and their properties compared with the simulated ones. It has been demonstrated that it is possible to gain the desired electromagnetic absorbing performance by alternating different compositions to suit a specific EM design.
机译:在微波上的吸收材料的开发对于电子和军事应用具有很大的兴趣,通过改变它们的组成来调整它们的电磁(EM)性能。本文制备了基于聚偏二氟乙烯(PVDF),钛酸钡(BATIO3)纳米颗粒和/或多织物碳纳米管(MWCNT)的复合薄膜。创新思想是使用强介质(BATIO3)和有用的(MWCNT)填料来调整所得材料的复杂介电常数(8.2-12.4GHz)。此外,在EM表征的基础上,选择特异性组合物通过膜堆叠产生多层板,利用数值模拟的结果,该结果提供了有关所需组合物和厚度的信息和不同层的顺序。设计的板坯被实现,与模拟的结构相比。已经证明,可以通过交替的不同组合物来满足特定的EM设计来获得所需的电磁吸收性能。

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