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Transmission Reflection and Dissipation of Microwaves in Magnetic Composites with Nanocrystalline Finemet-Type Flakes

机译:纳米晶体型薄片磁性复合材料中微波的传输反射和耗散

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摘要

The microwave properties of a composite material containing flakes of finemet-type nanocrystalline alloy placed in the epoxy matrix have been investigated. Two compositions have been studied: with 15% and 30% flakes. Frequency dependences of transmission and reflection coefficients are measured in the frequency range from 12 to 38 GHz. The dielectric permittivity and magnetic permeability are obtained, and the microwave losses are calculated. The dependences of transmission and reflection coefficients have been drawn as functions of wave frequency and thickness of the composite material, taking into account the frequency dependences of permittivity and permeability. The regions of maximal and minimal microwave absorption have been defined. The influence of wave interference on the frequency dependence of microwave absorption is studied.
机译:已经研究了含有在环氧基质中置于环氧基质中的细胞型纳米晶合金薄片的复合材料的微波性能。已经研究了两种组合物:15%和30%的薄片。在12到38GHz的频率范围内测量变速器和反射系数的频率依赖性。获得介电介电常数和磁导率,并计算微波损耗。考虑到介电常数和渗透率的频率依赖性,已经被绘制为透射和反射系数的依赖性作为复合材料的波频和厚度的功能。已经定义了最大和最小的微波吸收的区域。研究了波干扰对微波吸收频率依赖性的影响。

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