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首页> 外文期刊>Oriental Journal of Chemistry: An International Research Journal of Pure & Applied Chemistry >Complex Permittivity and Permeability Measurements and Numerical Simulation of Carbonyl Iron Rubber in X-Band frequency
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Complex Permittivity and Permeability Measurements and Numerical Simulation of Carbonyl Iron Rubber in X-Band frequency

机译:X频带频率下羰基铁橡胶的复介电常数和磁导率测量及数值模拟

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摘要

Recognizing the importance of an adequate characterization of radar absorbing materials (RAM), and consequently their development, the present study aims to contribute for the establishment and validation of experimental determination and numerical simulation of complex permittivity and permeability of electromagnetic materials, using for this a carbonyl iron was seventy percent of the mass concentration. The present work branches out into two related topics. The first one is concerned with the implementation of a computational modeling to predict the behavior of electromagnetic materials in confined environment by using electromagnetic three-dimensional simulation. The second topic re-examines the Nicolson-Ross-Weir mathematical model to retrieve the constitutive parameters (complex permittivity and permeability) of a homogeneous sample (carbonyl iron) from scattering coefficient measurements. The measured and calculated results show a good convergence that guarantees the application of the used methodologies for the characterization of carbonyl iron rubber in x-band frequency.
机译:认识到适当表征雷达吸收材料(RAM)的重要性,因此认识到它们的发展,本研究旨在为建立和验证电磁材料的复介电常数和磁导率的实验确定和数值模拟提供帮助。羰基铁占质量浓度的百分之七十。本工作分为两个相关主题。第一个涉及通过使用电磁三维仿真来预测有限空间中电磁材料行为的计算模型的实现。第二个主题重新检查了Nicolson-Ross-Weir数学模型,以从散射系数测量中检索均质样品(羰基铁)的本构参数(复介电常数和磁导率)。测量和计算结果显示出良好的收敛性,从而保证了所用方法在x波段频率上表征羰基铁橡胶的应用。

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