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Electromagnetic and microwave absorption properties of FeSiAl and flaky graphite filled Al2O3 composites with different FeSiAl particle size

机译:用不同诱导粒径填充瘘和片状石墨填充Al2O3复合材料的电磁和微波吸收性能

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The increasing electromagnetic interference problems have drawn much attention to microwave absorbing materials. To satisfy the needs of practical application, FeSiAI and flaky graphite filled Al2O3 composites were sintered by hot-pressing for microwave absorption application. The effect of FeSiAl particle size on the electromagnetic and microwave absorption properties was investigated in the X-band (8.2-12.4 GHz). The results show that the dielectric properties enhance significantly with increasing FeSiAI particle size, which is attributed to the increased interfacial polarization and conductance loss. As a result of the favorable impedance matching and appropriate electromagnetic attenuation, the reflection loss (RL) of the composites filled with 25-48 mu m flaky FeSiAl achieves -15.2 dB at 10.6 GHz and the effective absorption bandwidth (RL < -10 dB) is 1.2 GHz in 10.0-11.2 GHz with a matching thickness of 1.0 mm. It indicates that FeSiAl and flaky graphite filled Al2O3 composites are potential candidates for thin-thickness microwave absorbing materials, and the microwave absorption properties can be enhanced by adjusting absorbent particle size.
机译:增加的电磁干扰问题已经引起了微波吸收材料的关注。为了满足实际应用的需要,通过热压用于微波吸收施用,烧结FESIAI和FESIAI和片状石墨填充的AL2O3复合材料。在X波段(8.2-12.4GHz)中研究了诱导粒度对电磁和微波吸收性能的影响。结果表明,介电性能随着Fesiai粒度的增加而提高,这归因于增加的界面极化和电导损耗。由于良好的阻抗匹配和适当的电磁衰减,填充25-48μm的复合材料的反射损失(RL)在10.6GHz和有效吸收带宽(RL <-10 dB)下实现-15.2dB)在10.0-11.2 GHz中是1.2 GHz,匹配厚度为1.0毫米。它表明,体育和片状石墨填充的Al 2 O 3复合材料是薄厚度微波吸收材料的潜在候选物,并且通过调节吸收粒度可以提高微波吸收性能。

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