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Heavily loaded ferrite-polymer composites to produce high refractive index materials at centimetre wavelengths

机译:重载铁氧体-聚合物复合材料可在厘米波长下产生高折射率材料

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A cold-pressing technique has been developed for fabricating composites composed of a polytetrafluoroethylene-polymer matrix and a wide range of volume-fractions of MnZn-ferrite filler (0%–80%). The electromagnetic properties at centimetre wavelengths of all prepared composites exhibited good reproducibility, with the most heavily loaded composites possessing simultaneously high permittivity (180 ± 10) and permeability (23 ± 2). The natural logarithm of both the relative complex permittivity and permeability shows an approximately linear dependence with the volume fraction of ferrite. Thus, this simple method allows for the manufacture of bespoke materials required in the design and construction of devices based on the principles of transformation optics.
机译:已经开发出一种冷压技术,用于制造由聚四氟乙烯-聚合物基体和各种体积分数的MnZn铁氧体填料组成的复合物(0%–80%)。所有制备的复合材料在厘米波长处的电磁性能均表现出良好的重现性,其中最重的复合材料同时具有高介电常数(180±10)和磁导率(23±2)。相对复介电常数和磁导率的自然对数显示出与铁素体体积分数的近似线性关系。因此,这种简单的方法允许根据转换光学原理制造在设备设计和构造中所需的定制材料。

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