Radar-absorbing composite materials based on ferrite powders

G. P. Benderskiy, Yu. M. Molostova, P. A. Rumyantsev, S. Serebryannikov, S. S. Serebryannikov
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引用次数: 1

Abstract

The paper studies the effect of particle sizes of hexagonal ferrite powders on their electrodynamic properties. SrTi0.2Co0.2Fe11.6O19 and BaSc0.2Fe11.8O19 hexaferrites were used as the objects of research. Grinding in a high-energy planetary mill for up to 60 minutes made it possible to obtain hexaferrite powder particles with the average size successively decreasing from 1.5–2 μm to 0.05–0.15 μm. A scanning electron microscope was used for the analysis. Samples were prepared in a mixture with a polymer binder (70% ferrite + 30% polymer), and their electromagnetic radiation (EMR) absorbing capacity was studied in the microwave range from 30 to 50 GHz. It was shown that there is practically no peak corresponding to ferrimagnetic resonance in the composite with ferrite, with a decrease in the average particle size of BaSc0.2Fe11.8O19 hexaferrite powders to 50–150 nm. The dependences of the real and imaginary parts of the magnetic permeability and dielectric constant are given in the frequency range from 107 to 109 Hz. There was no domain wall resonance in the frequency dependence of magnetic losses for a ferrite-based composite mechanically activated for 60 min. SrTi0.2Co0.2Fe11.6O19 ferrite was milled in a bead mill to particles with an average size of 150–300 nm, and then to drying, pressing, sintering at 1360 °С and subsequent grinding to a size of 200–500 μm to obtain similar composites in a bond with a polymer. It was found that the properties of compositions change significantly with a change in the magnetic component synthesis technology: no resonant pattern of EMR absorption was observed. The Curie temperature was measured using the Faraday method. It was shown that it is ~340 °С for the studied material. Therefore, the effect of precursor milling on changes in magnetocrystalline anisotropy was identified.
基于铁氧体粉末的雷达吸波复合材料
研究了六方铁氧体粉末粒度对其电动力学性能的影响。以srti0.2 co0.2 fe11.60 o19和basc0.2 fe11.80 o19六铁体为研究对象。在高能行星磨机中研磨60分钟,可以获得平均粒径从1.5-2 μm依次减小到0.05-0.15 μm的六铁素体粉末颗粒。采用扫描电子显微镜进行分析。采用聚合物粘结剂(70%铁氧体+ 30%聚合物)混合制备样品,研究了样品在30 ~ 50 GHz微波范围内的电磁辐射吸收能力。结果表明:在与铁氧体的复合材料中,几乎没有铁氧体共振峰,basc0.2 fe11.80 o19六铁氧体粉末的平均粒径减小到50 ~ 150 nm;给出了在107 ~ 109 Hz频率范围内,磁导率和介电常数的实部和虚部的依赖关系。机械活化60 min后,铁素体基复合材料的磁损耗随频率变化不存在畴壁共振。将srti0.2 co0.2 fe11.60 o19铁氧体在球磨机中研磨成平均尺寸为150-300 nm的颗粒,然后在1360°С下干燥、压制、烧结,然后研磨成200-500 μm的尺寸,得到与聚合物结合的类似复合材料。研究发现,随着磁性组分合成工艺的改变,合成物的性质发生了明显的变化:没有观察到EMR吸收的共振模式。采用法拉第法测量居里温度。结果表明,所研究材料的温度为~340°С。因此,确定了前驱体铣削对磁晶各向异性变化的影响。
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