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Reduction of Electromagnetic Interference Using ZnO-PCL Nanocomposites at Microwave Frequency

机译:微波频率下使用ZnO-PCL纳米复合材料进行电磁干扰的降低

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摘要

In industrial equipment and home appliance applications, the electromagnetic compatibility compliance directive (ECCD) demands that electromagnetic interference side effects be eliminated or marginally minimized. The equipment must not disturb radio and telecommunication as well as other appliances. Additionally the ECCD also governs the immunity of such equipment to interference and seeks to ensure that this equipment is not disturbed by radio emissions when used as intended. Many types of absorbing materials are commercially available. However, many are expensive and not environmentally friendly. It is in the light of the above that we studied the electromagnetic absorption properties of ZnO-PCL nanocomposites prepared from cheap and abundant resources which are environmentally friendly (zinc and polycaprolactone). The test was carried out using a microstrip, open ended coaxial probe, and vector network analyzer. Amongst other findings, result showed that the ZnO-PCL nanocomposite has the capability of attenuating microwave frequency up to −18.2 dB due to their very high specific surface areas attributed to the nanofillers at 12 GHz.
机译:在工业设备和家电应用,电磁兼容性合规指令(ECCD)要求该电磁干扰的副作用被消除或略有减少。该设备不得干扰无线电和电信以及其他设备。此外,该ECCD也管理这种设备的干扰的免疫力和力求确保使用时如预期该设备没有被无线电发射干扰。许多类型的吸收材料是市售的。然而,许多价格昂贵,而且不环保。它是在的光以上我们所研究的ZnO-PCL纳米复合材料的电磁吸收性能从廉价而丰富的资源,这是环境友好的(锌和聚己内酯)制备。该试验进行了使用微带,开放式的同轴探针,和矢量网络分析仪。在其他的研究结果,结果表明,在ZnO-PCL纳米复合材料具有衰减微波频率高达-18.2分贝的能力,由于在12 GHz的归因于纳米填料的非常高的比表面积。

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