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Effect of ZnO-PCL Nanocomposite Thickness on Attenuation in a Rectangular Waveguide at Microwave Frequency using FEM

机译:有限元分析中ZnO-PCL纳米复合材料厚度对矩形波导微波频率衰减的影响

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Presented in this work is an essential and basic approach to compute the attenuation of electromagnetic waves propagating through a rectangular waveguides with lossy material sample placed inside the waveguide. The rectangular waveguide (WR 90) technique is used to theoretically calculate the attenuation of electromagnetic wave as it interacts with ZnO-PCL nanocomposites of different sample thicknesses from measurements of transmission /reflection coefficients in the X-Band. Finite element method (FEM) was also used to calculate attenuation for the same sample thicknesses at X-Band. Comparison of the attenuation results obtained from experiment and FEM were analysed. Among other findings, it was found that the composite with 6.8 mm thickness gave the highest attenuation within the frequency range measured. The comparative study between the techniques showed close measurement system agreement. The value of attenuation for the different thicknesses measured showed that the composites is a good material for microwave low absorption. This material composites can be applied to mobile communication devices as thin layer circuit board for electromagnetic wave absorption.
机译:在这项工作中提出的是一种基本且基本的方法,用于计算通过矩形波导传播的电磁波的衰减,并将损耗性材料样本放置在波导内部。矩形波导(WR 90)技术用于根据电磁波与X波段透射/反射系数的测量值,从理论上计算电磁波与不同样品厚度的ZnO-PCL纳米复合材料相互作用时的衰减。还使用有限元方法(FEM)来计算X波段相同样品厚度的衰减。分析了从实验和有限元获得的衰减结果的比较。在其他发现中,发现厚度为6.8 mm的复合材料在测得的频率范围内衰减最大。两种技术之间的比较研究表明测量系统的一致性。对于所测量的不同厚度的衰减值表明,该复合材料是微波低吸收的良好材料。这种材料复合物可以作为薄层电路板应用于电磁波吸收的移动通信设备。

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