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Two-layered Microwave Absorber Laminated with Magnetic Composites for Intelligent Transport System

机译:用磁性复合材料层压两层微波吸收器,用于智能运输系统

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Two-layered microwave absorbers are designed for the achievement of low reflection coefficient for wide angles of oblique incidence at the frequency of intelligent transport system (5.9 GHz). Magnetic composite sheets were fabricated with carbonyl iron (CI) and Co_2Z hexaferrite particles in rubber matrix. On the basis of transmission line theory, reflection loss has been calculated with variation of incident angles for both transverse electric (TE) and transverse magnetic (TM) polarization. The minimum reflection loss (less than -20 dB) is predicted at 5.9 GHz for the laminated composites of Co_2Z/CI. At the optimum thickness of the composite layers, a low value of reflection loss (less than -10 dB) is predicted for wide incidence angles up to 60°. The twolayer composites laminate can be proposed as the high potential microwave absorbers for improvement of electromagnetic environment in ITS operation.
机译:双层微波吸收器设计用于实现智能运输系统频率下倾斜入射角的低反射系数(5.9GHz)。用羰基铁(CI)和CO_2Z六己二酯颗粒制成磁性复合片材,橡胶基质。在传输线理论的基础上,已经利用横向电气(TE)和横向磁(TM)偏振的入射角的变化来计算反射损耗。对于CO_2Z / CI的层压复合材料,预测最小反射损耗(小于-20dB)预测为5.9GHz。在复合层的最佳厚度下,预测到高达60°的宽入射角的低值的反射损耗(小于-10dB)。双层复合材料层压材料可以提出为高电位微波吸收器,用于改善其操作中的电磁环境。

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