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首页> 外文期刊>Microwave Theory and Techniques, IEEE Transactions on >Fractal Frequency-Selective Surface Embedded Thin Broadband Microwave Absorber Coatings Using Heterogeneous Composites
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Fractal Frequency-Selective Surface Embedded Thin Broadband Microwave Absorber Coatings Using Heterogeneous Composites

机译:分形频率选择表面嵌入的非均质复合材料薄宽带微波吸收层

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The development of thin microwave absorber coatings that operates for a wide range of frequencies is still a challenging task. This work presents a technique of blending a fractal frequency selective surface (FSS) with single- and double-layer coatings. These coatings are comprised of well-optimized micrometer-sized (80–90 ) and nano-sized (20–30 nm) Ti particles based (80–100 nm) composites. The main objective of this study is to achieve good absorption with wide bandwidth corresponding to for less coating thickness (). Waveguide measurements are carried out to obtain the effective complex dielectric permittivity () and effective complex magnetic permeability () values of -Ti based heterogeneous composites. The measured , , , and values are used for the designing of double-layer composite absorbers, where the suitable composite se- ection, layer preferences, as well as thickness of layers are optimized using a genetic algorithm. The fractal geometry based FSSs have been designed using an iterated function system, which are embedded with single- and double-layer composite absorbers to examine their effect on absorption. A double-layer composite coating with a Sierpinski gasket fractal FSS shows a strong RL of 35.57 dB at 9.5 GHz with broad bandwidth of 4.2 GHz in the range from 8.2 to 12.4 GHz. The total coating thickness is only 1.4 mm. Findings provide an effective and feasible way to develop thin and broadband absorber coatings for various practical applications.
机译:可以在很宽的频率范围内工作的薄微波吸收剂涂层的开发仍然是一项艰巨的任务。这项工作提出了一种将分形频率选择表面(FSS)与单层和双层涂层混合的技术。这些涂层由高度优化的微米级(80–90)和纳米级(20–30 nm)的基于Ti颗粒(80–100 nm)的复合材料组成。这项研究的主要目的是在宽带宽的情况下实现良好的吸收,对应于较小的涂层厚度()。进行波导测量以获得基于-Ti的异质复合材料的有效复介电常数()和有效复磁导率()值。测得的,,和值用于双层复合吸收体的设计,其中使用遗传算法优化了合适的复合部分,层首选项以及层的厚度。基于分形几何的FSS已使用迭代功能系统进行设计,该功能系统嵌入有单层和双层复合吸收剂以检查其对吸收的影响。具有Sierpinski密封垫分形FSS的双层复合涂层在9.5 GHz时显示出35.57 dB的强RL,在4.2 GHz至12.4 GHz范围内具有4.2 GHz的宽带宽。总涂层厚度仅为1.4毫米。这些发现为开发用于各种实际应用的薄的宽带吸收剂涂层提供了一种有效可行的方法。

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