基于单层复合材料的w波段雷达吸波材料

H. Baskey, T. C. Shami, R. Kumar, S. Kumar, A. Dixit, N. Prasad
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引用次数: 1

摘要

本文设计并制备了基于织物基多层复合材料的单片雷达吸波复合材料。多层层压板由玻璃和碳基织物以及环氧介质中的有损介电填料组成。采用真空装袋技术制备了层合材料,并利用准光学自由空间测量系统(QOFMS)在W波段(75 ~ 110 GHz)测量了层合材料的介电常数和损耗正切等本构电磁性能。在模拟结果的基础上,制作了优化的单片结构,并利用QOFMS进行了电磁吸收测试。实验结果表明,整个频率区域的反射损耗最小为10 dB(90%电磁吸收)。该结构在减小隐身雷达截面积方面具有潜在的应用前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Monolithic composite based on multilayered fabrics for W-band radar absorber
In this paper a monolithic radar absorbing composite based on the fabric based multilayer laminates have been designed and fabricated. The multilayer laminate consists of the glass and carbon based fabrics along with lossy dielectric fillers in the epoxy medium. The individual laminates have been fabricated using vaccum bagging technology and their constitutive electromagnetic properties e.g. dielectric constant and loss tangent have been evaluated using the quasi optical free space measurement system (QOFMS) in the W band (75–110 GHz) frequency region. Based on the simulated results, optimized monolithic configuration of individual laminates have been fabricated and tested for the electromagnetic absorption using QOFMS. The experimental result shows minimum 10 dB reflection loss (90% electromagnetic absorption) across the entire frequency region. The fabricated structure shows potential applications for the radar cross section reduction for the stealth applications.
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