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首页> 外文期刊>Journal of Applied Physics >Optimization of two-layer electromagnetic wave absorbers composed of magnetic and dielectric materials in gigahertz frequency band
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Optimization of two-layer electromagnetic wave absorbers composed of magnetic and dielectric materials in gigahertz frequency band

机译:由千兆赫兹频段的磁性和介电材料组成的两层电磁波吸收器的优化

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摘要

Both experimentally and theoretically, a two-layer electromagnetic (EM) wave absorber exhibits the possibility of meeting the demand for effective EM wave absorbers. The first layer, made up of magnetic micpowder (MMP), has a large permeability and magnetic loss, while the second layer, comprised of MMP and nanotitanium powder, has a frequency dispersion with the parameters of permittivity and permeability to match the incidence free space over a wide frequency range. The predicted results are based on the modulus of permittivity (permeability) which obeys a logarithmic law of mixtures, and the loss tangent is related through a linear law of mixtures. A linear regression analysis performed on the data points provides constants that can be used to predict the effective parameters at different frequencies. Finally, a program is presented that computes the optimum amount of MMP in the second layer and the required thickness for each layer. The predicted results agree quite well with the measured data.
机译:在实验和理论上,两层电磁(EM)吸收器都具有满足有效EM吸收器需求的可能性。第一层由磁微粉(MMP)组成,具有较大的磁导率和磁损耗,而第二层由MMP和纳米钛粉组成,具有频散,其介电常数和导磁率参数与入射自由空间匹配在很宽的频率范围内。预测结果基于介电常数(渗透率)模量,该模量遵循混合物的对数律,损耗角正切与混合物的线性律有关。在数据点上执行的线性回归分析提供了可用于预测不同频率下的有效参数的常数。最后,提出了一个程序,该程序计算第二层中MMP的最佳量以及每一层所需的厚度。预测结果与实测数据非常吻合。

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