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Effects of BaTiO_3 and FeAlSi as fillers on the magnetic, dielectric and microwave absorption characteristics of the epoxy-based composites

机译:BaTiO_3和FeAlSi作为填料对环氧基复合材料的磁,介电和微波吸收特性的影响

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摘要

A systematic study was carried out on the magnetic, dielectric and microwave absorption properties of the two-phase FeAlSi/epoxy and three-phase FeAlSi/BaTiO_3/epoxy composites through experimental and simulation method. A percolation effect was observed in the dielectric, but not in the magnetic behavior of the FeAlSi/epoxy composites when the FeAlSi content was high. The 2D modeling shows that the high electric energy density is responsible for the high permittivity near the percolation threshold (49 vol%). On the other hand, the permeability of the composites matches well with the effective medium theory model (EMT), indicating that the permeability of FeAlSi/epoxy composite is more associated with the filler size and shape. Theoretical calculations show that the increment of the FeAlSi and BaTiO_3 loading, as well as the thickness will cause the absorption peak position to shift to low frequencies. The microwave absorption of these composites can be mainly attributed to the dielectric loss and magnetic loss.
机译:通过实验和模拟方法,对两相FeAlSi /环氧树脂和三相FeAlSi / BaTiO_3 /环氧树脂复合材料的磁,介电和微波吸收性能进行了系统的研究。当FeAlSi含量高时,在电介质中观察到渗滤作用,但在FeAlSi /环氧树脂复合材料的磁行为中未观察到渗滤作用。 2D建模表明,高电能量密度是导致渗流阈值(49 vol%)附近高介电常数的原因。另一方面,复合材料的渗透率与有效介质理论模型(EMT)吻合良好,表明FeAlSi /环氧树脂复合材料的渗透率与填料的尺寸和形状更相关。理论计算表明,FeAlSi和BaTiO_3载荷的增加以及厚度的增加将导致吸收峰的位置向低频移动。这些复合材料的微波吸收可以主要归因于介电损耗和磁损耗。

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