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首页> 外文期刊>Journal of Applied Polymer Science >Microwave absorbing and mechanical properties of alternating multilayer carbonyl iron powder-poly(vinyl chloride) composites
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Microwave absorbing and mechanical properties of alternating multilayer carbonyl iron powder-poly(vinyl chloride) composites

机译:交替多层羰基铁粉 - 聚(氯乙烯)复合材料的微波吸收和力学性能

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摘要

Polymeric composites filled with magnetic absorbents have been used extensively as microwave absorbing materials. However, their high filler content obstructed the application. In order to optimize the filler content and further improve the microwave absorbing properties, alternating multilayer carbonyl iron powder (CIP)/poly(vinyl chloride) (PVC) composites were designed and prepared by stacking neat PVC and CIP filled PVC alternately. The microwave absorbing properties were theoretically calculated by the transmission line theory and experimentally measured by the arch method, respectively. The experimental results were consistent with the calculated ones, which demonstrated that the alternating multilayer structure design can significantly improve the microwave absorbing property without increasing the filler content. The consistent results also demonstrated that the reflection loss (R-L) of the multilayer composites was strongly dependent on the layer number and layer arranging sequence. The minimum R-L (R-L-min) and effective bandwidth were exponentially dependent on the layer number. And the dependencies of the R-L-min and effective bandwidth on layer number exhibited a regularity reversal phenomenon when different layers faced to the incident wave. The mechanical property test showed that the alternating multilayer composites possessed enhanced tensile strength and elongation at break as the layer number increased. (c) 2017 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2018, 135, 45846.
机译:填充有磁性吸收剂的聚合物复合材料已被广泛用于微波吸收材料。然而,它们的高填充物含量阻碍了该应用。为了优化填料含量并进一步改善微波吸收性,通过堆叠整齐PVC和交替填充PVC,设计和制备和制备交替的多层羰基铁粉(CIP)/聚(氯乙烯)复合材料。通过传输线理论理论地计算微波吸收性能,并分别通过拱法实验测量。实验结果与计算的实验结果一致,表明交替的多层结构设计可以显着改善微波吸收性能而不增加填料含量。一致的结果还证明了多层复合材料的反射损耗(R-1)强烈依赖于层数和层排列序列。最小R-L(R-L-MIN)和有效带宽是指数依赖于层数。并且当不同层面对入射波时,R-L最小和有效带宽的依赖性表现出规律性反转现象。机械性能试验表明,随着层数增加,交替的多层复合材料具有增强的拉伸强度和断裂处的伸长率。 (c)2017 Wiley期刊,Inc.J.Phill。聚合物。 SCI。 2018,135,45846。

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