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Magnetism and Microwave Absorption Properties of Fe3O4 Microflake-Paraffin Composites Without and With Magnetic Orientation

机译:Fe3O4微铝饼 - 石蜡复合材料的磁性和微波吸收性能,无磁取向

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摘要

We have synthesized thin Fe3O4 microflakes by a simple hydrothermal method and prepared Fe3O4 microflake-paraffin composites without and with magnetic orientation using the method of simple ultrasonic mixing and rotating samples in a magnetic field. X-ray diffractometer, Mossbauer spectrum, scanning electron microscope and vibrating sample magnetometer were used to characterize the samples. The complex permittivity and permeability of Fe3O4 microflake-paraffin composites without and with magnetic orientation were measured in the frequency range of 0.1-18 GHz by a vector network analyzer using a coaxial method. The reflection loss (RL) was calculated by the measured electromagnetic parameters using transmission line theory. The measurement of electromagnetic parameters shows that magnetic orientation makes the complex permittivity and permeability increase. The calculated RL shows that the Fe3O4 microflake-paraffin composite with magnetic orientation has enhanced microwave absorption properties in the frequency range of 1-3 GHz and the thickness range of 2.9-3.5 mm, indicating that the Fe3O4 microflake-paraffin composite with magnetic orientation is a promising thin microwave absorption material in the L-S band.
机译:通过简单的水热法合成薄Fe3O4微涂抹,并使用简单超声波混合和磁场中的旋转样品的方法制备的Fe3O4微铂 - 石蜡复合材料,磁性取向。 X射线衍射仪,Mossbauer光谱,扫描电子显微镜和振动样品磁力计用于表征样品。使用同轴方法,在0.1-18GHz的频率范围内测量Fe3O4微铂 - 石蜡复合材料的复杂介电常数和渗透率。反射损耗(RL)通过使用传输线理论的测量电磁参数计算。电磁参数的测量表明,磁取向使得复杂介电常数和渗透性增加。计算的R1显示,具有磁取的Fe3O4微铂复合材料具有1-3GHz频率范围内的微波吸收特性,厚度范围为2.9-3.5mm,表明Fe3O4微铂 - 石蜡复合材料具有磁性取向LS带中有希望的薄微波吸收材料。

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