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The Use of Fabric Composite Frequency Selective Surface in Sandwich Structures for Low-Observable Radomes

机译:使用织物复合频率选择表面在夹层结构中的低可观察放射线

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In this work, the hybrid fabrics of carbon and quartz fibers as filters were adopted in PMI core sandwich structures for low-observable radomes. The advantages of fabric composite frequency selective surfaces (FCFSSs) are easily fabricated by braiding and shaped into curved surfaces. This paper mainly studied the electromagnetic (EM) transmission characteristics of the low-observable radome wall with composite FSS by 3-dimensional electromagnetic analysis software. First of all, the accuracy of the simulation model composed of up and down composite face sheets, a layer of composite FSS and PMI core was validated by comparing with experimental results. Then, the studies on electromagnetic transmission characteristics of the sandwich structure with composite FSS and the sensitivity analysis about the thickness and permittivity of face sheets and PMI core were carried out. The results show that the sandwich structure with single layer composite FSS can realize the function of frequency selection, limit the reflection at the resonance frequency and decrease the sensitivity of EM transmission loss about the thickness of sandwich structures.
机译:在这项工作中,在PMI核心夹心结构中采用了碳和石英纤维的混合织物,用于低可观察到的放射线。织物复合频率选择表面(FCFSS)的优点是通过编织和成形到弯曲表面中容易地制造。本文主要研究了三维电磁分析软件与复合FSS的低可观察到弧度壁的电磁(EM)传动特性。首先,通过比较实验结果,验证了由上下复合面板组成的模拟模型的准确性,通过比较实验结果验证了一层复合FSS和PMI核心。然后,进行了具有复合FSS的夹层结构的电磁传动特性的研究以及面部片材和PMI芯的厚度和介电常数的敏感性分析。结果表明,具有单层复合FSS的夹层结构可以实现频率选择的功能,限制共振频率的反射,并降低夹层结构厚度的EM传输损耗的灵敏度。

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