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Measurement and Evaluation of Dielectric, Magnetic and Microwave Absorbing Properties of Carbonyl Iron Loaded Polymer Composites

机译:羰基铁负载聚合物复合材料的介电,磁和微波吸收性能的测量和评估

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Composites with carbonyl iron (CI) as filler and polyvinylchloride (PVC) as polymer matrix were prepared and measured in the 1 MHz–3 GHz frequency range to study their dielectric, magnetic and microwave absorbing characteristics. Complex (relative) permittivity ε== ε’ - jε “was mainly caused by the interfacial polarization mechanism. Complex (relative) permeability µ = µ’ - µ” showed a relaxation type offrequency dispersion, which is due to the natural ferromagnetic resonance phenomenon. The ε and ε raised, and the minimum of return loss (RL)min shifted towards low frequencies with increasing CI content. The results outlined that the fabricated composites may be used to design good and cost-effective electromagnetic interference noise suppressors.
机译:制备了以羰基铁(CI)为填充物和聚氯乙烯(PVC)为聚合物基体的复合材料,并在1 MHz–3 GHz频率范围内对其进行了测量,以研究其介电,磁和微波吸收特性。复数(相对)介电常数ε==ε'-jε“主要是由界面极化机制引起的。复数(相对)磁导率µ = µ'-µ”显示出一种弛豫类型的频率色散,这是由于自然的铁磁共振现象引起的。随着CI含量的增加,ε和ε升高,并且最小回波损耗(RL)min向低频移动。结果概述了所制造的复合材料可用于设计良好且具有成本效益的电磁干扰噪声抑制器。

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