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Effect of Magnetic Field Treatment on the Electromagnetic Properties of Polymer Composite Based on Barium Hexaferrite at Microwave Frequencies

机译:磁场处理对微波频率钡六磷酸钙的聚合物复合材料电磁特性的影响

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Polymer composite materials are used in widely different areas of science and industry. It is possible to change electromagnetic properties of composite materials by external treatments. The present work focuses on the change of electromagnetic characteristics of barium polymer composite, which is exposed to the external magnetic field with different strength. Composite materials, containing 65 wt. % concentrations of barium hexaferrite (Z-type) powder with a linear size of less than 80 μm as fillers and epoxy resin as matrix were prepared. Reflection coefficients were measured by coaxial method at frequency range of 0.01 - 18 GHz. It was revealed that reflection coefficients of barium hexaferrite and epoxy resin composite are very sensitive to the values of external magnetic field. There is nonlinear dependence of the reflection coefficients on the values of external magnetic field. The optimum value of the strength of the external magnetic field was shown to be equal 4 mT. The Cramers-Kronig relations were used to recover the real parts of the permeability and correct the imaginary parts of the permeability.
机译:聚合物复合材料用于广泛不同的科学和工业领域。可以通过外部处理改变复合材料的电磁特性。本工作侧重于钡聚合物复合材料的电磁特性的变化,其暴露于具有不同强度的外部磁场。复合材料,含有65重量%。制备作为填料和环氧树脂作为填料的线性尺寸为填料和环氧树脂作为基质的升六氟石(Z型)粉末的百分比浓度。反射系数通过同轴法测量0.01-18GHz的频率范围。据透露,六氟钡和环氧树脂复合材料的反射系数对外部磁场的值非常敏感。反射系数对外部磁场值的非线性依赖性。外部磁场强度的最佳值被显示为等于4 mt。 Cramers-Kronig关系用于恢复渗透性的真正部分,校正渗透性的虚部。

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