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Tuning the impedance matching characteristics of microwave absorbing paint in X-band using copper particles and polypyrrole coating

机译:使用铜粒子和聚吡咯涂层调整X波段吸波涂料的阻抗匹配特性

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摘要

A new multifunctional microwave absorbing material is designed. Two types of ferrites were synthesized, namely soft NiCoTi ferrite and hard SrCoTi ferrites, by sol-gel auto combustion method. Then, the ferrites along with an appropriate quantity of micro-copper particles were coated by polypyrrole using in situ chemical polymerization of pyrrole. The resulted material was hosted into a polyurethane matrix to prepare a microwave absorbing paint. The accumulative roles of the different components of the microwave absorber were investigated. The permittivity and permeability were recorded in the X-band and the reflection loss of the material at different thicknesses was estimated. The structure of the prepared microwave absorbing material was investigated using XRD and FTIR spectroscopy. VSM was used to record the samples' magnetic hysteresis loops. The morphology of the absorber was studied using SEM. The new prepared microwave absorbing composite material was compared to a simple mixture of its components and the importance effect of the interfacial polarization was highlighted. The microwave absorption properties were measured in the X-band range as a function of absorber thickness, Ferrites/PPY ratio and copper percentage. By changing Ferrites/PPY ratio the microwave absorption performance was tuned. The optimal copper percentage in the composite was optimized and it was found that 10 %w/w of copper widens the -10 dB bandwidth to 3 GHz and enhances the maximum reflection loss to -24 dB.
机译:设计了一种新型的多功能微波吸收材料。通过溶胶-凝胶自动燃烧法合成了两种类型的铁素体,即软NiCoTi铁素体和硬SrCoTi铁素体。然后,使用吡咯的原位化学聚合通过聚吡咯涂覆铁氧体以及适量的微铜颗粒。将得到的材料放入聚氨酯基质中以制备吸收微波的涂料。研究了微波吸收器不同成分的累积作用。在X带中记录介电常数和磁导率,并估计材料在不同厚度下的反射损耗。用XRD和FTIR光谱研究了所制备的微波吸收材料的结构。 VSM用于记录样品的磁滞回线。使用SEM研究了吸收体的形态。将新制备的微波吸收复合材料与其组分的简单混合物进行了比较,突出了界面极化的重要作用。在X波段范围内测量的微波吸收特性是吸收体厚度,铁氧体/ PPY比和铜百分比的函数。通过改变铁氧体/ PPY比率,可以调节微波吸收性能。优化了复合材料中的最佳铜百分比,发现10%w / w的铜将-10 dB带宽扩展到3 GHz,并将最大反射损耗提高到-24 dB。

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