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Multilayered Nonwoven Carbon Film Integrated with Flexible FSS for Aerospace Absorber Application

机译:柔性FSS集成的多层非织造碳膜在航空航天吸收器中的应用

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This paper describes the electromagnetic design, simulation and fabrication of microwave absorber composite based on non woven carbon film and frequency selective surfaces. The filler ingredients i.e. the non woven carbon films were used in conjunction with the glass fabrics and epoxy for the fabrication of proposed absorber. The constituent electromagnetic properties i.e. dielectric constant and loss tangent of carbon films and glass fibers reinforced plastics have been measured and used in the electromagnetic simulation and optimization of absorber composite. Furthermore the optimized configuration have been used for composite fabrication and tested for its electromagnetic absorption. Experimental results shows minimum 10 dB reflection loss (90% electromagnetic absorption) in the entire 8.20-12.40 GHz frequency region. The fabricated composite shows potential application for radar cross section reduction in various strategic applications.
机译:本文介绍了基于非织造碳膜和频率选择表面的微波吸收体复合材料的电磁设计,仿真和制造。填料成分,即非织造碳膜与玻璃织物和环氧树脂一起用于制造所提出的吸收体。已经测量了组成电磁特性,即碳膜和玻璃纤维增​​强塑料的介电常数和损耗角正切,并将其用于吸收体复合材料的电磁仿真和优化。此外,优化的配置已用于复合材料制造,并对其电磁吸收进行了测试。实验结果表明,在整个8.20-12.40 GHz频率范围内,反射损耗最小为10 dB(电磁吸收率为90%)。制成的复合材料在各种战略应用中显示出减少雷达横截面的潜在应用。

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