Vertical interface augmented tunability of scattering spectra in ferromagnetic microwire/silicone rubber metacomposites

IF 1.5 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY
A. Uddin, F. Qin, D. Estevez, H. Peng
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引用次数: 5

Abstract

Previously, we have demonstrated a viable approach based on microstructural and topological modulation of periodically arranged elements to program wave scattering in ferromagnetic glass-coated microwire metacomposites. In order to fully exploit the intrinsic structure of the composite, here, we implement the concept of composites plainification by an in-built vertical interface on randomly dispersed short-cut microwires allowing the adjustment of electromagnetic properties to a larger extent. Such interface was modified through arranging wires with different internal structures in two separated regions and by alternating these regions through wire concentration variations associated with polarization differences across the interface. When the wire concentration was equal in both regions, two well-defined transmission windows with varied amplitude and bandwidth were generated. Wire concentration fluctuations resulted in strong scattering changes ranging from broad passbands to pronounced stopbands, demonstrating the intimate relationship between wire content and space charge variations at the interface. This provides a new method to rationally exploit interfacial effects and microstructural features of microwire metacomposites. Moreover, the advantages of enabling tunable scattering spectra by merely 0.053 vol.% of fillers and simple structure make the proposed plainification strategy instrumental to designing filters with broadband frequency selectivity.
垂直界面增强了铁磁微丝/硅橡胶复合材料散射光谱的可调性
之前,我们已经证明了一种基于周期性排列元素的微结构和拓扑调制的可行方法来编程铁磁玻璃涂层微丝超复合材料中的波散射。为了充分利用复合材料的内在结构,在这里,我们通过在随机分散的短切微线上内置垂直界面来实现复合材料平面化的概念,从而在更大程度上调节电磁特性。通过在两个分离的区域中排列具有不同内部结构的导线,并通过与界面上的极化差异相关的导线浓度变化来交替这些区域,从而修改该界面。当两个区域的导线浓度相等时,产生了两个具有不同振幅和带宽的清晰透射窗口。金属丝浓度的波动导致了从宽通带到明显阻带的强烈散射变化,表明金属丝含量与界面处空间电荷变化之间存在密切关系。这为合理利用微丝超复合材料的界面效应和微观结构特征提供了一种新的方法。此外,仅用0.053 vol.%的填料即可实现可调谐的散射光谱,且结构简单,这使得该平滑策略有助于设计具有宽带频率选择性的滤波器。
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来源期刊
EPJ Applied Metamaterials
EPJ Applied Metamaterials MATERIALS SCIENCE, MULTIDISCIPLINARY-
CiteScore
3.10
自引率
6.20%
发文量
16
审稿时长
8 weeks
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