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Analyses of the mechanical, electrical and electromagnetic shielding properties of thermoplastic composites doped with conductive nanofillers

机译:用导电纳米掺杂物掺杂热塑性复合材料的机械,电磁屏蔽性能分析

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摘要

The purpose of this study is to observe effect of incorporating vapor-grown carbon nanofibers with various amounts in polyvinylidene fluoride matrix in terms of mechanical strength and electromagnetic shielding effectiveness. Thermoplastic conductive nanocomposites were prepared by heat-pressed compression molding. Vapor-grown carbon nanofibers were utilized at various weight ratios (1wt.%, 3wt.%, 5wt.%, and 8wt.%) as conductive and reinforcing materials. Polyvinylidene fluoride was used as a thermoplastic polymer matrix. Scanning electron microscopic analysis was conducted in order to characterize the morphology and structural properties of the nanocomposites and results revealed well dispersion of carbon nanofibers within the matrix for all concentrations. Mechanical characteristics were investigated according to standards. Findings proved that overall increments of 16%, 37.5%, and 56% were achieved in terms of tensile strength, elasticity modulus, and impact energy, respectively, where a total reduction of 44.8% was observed in terms of elongation for 8wt.% vapor-grown nanofiber matrix compared to that of 0wt.%. Electromagnetic shielding effectivenesses of the nanocomposites were determined by standard protocol using coaxial transmission line measurement technique in the frequency range of 15-3000 MHz. It was observed that resistance, sheet resistance, and resistivity of nanocomposites depicted substantial reduction with the increment in nanofiber content. Nevertheless, it was observed that nanofiber content, dispersion, and network formation within the composites were highly influent on the electromagnetic shielding effectiveness performance of the structures.
机译:本研究的目的是观察在机械强度和电磁屏蔽效果方面,在聚偏二氟乙烯基质中用各种量掺入汽化碳纳米纤维的效果。通过加热压缩成型制备热塑性导电纳米复合材料。以各种重量比(1wt.%,3wt.%,5wt.%,5wt.%)以汽化碳纳米纤维用作导电和增强材料。聚偏二氟乙烯用作热塑性聚合物基质。进行扫描电子显微镜分析,以表征纳米复合材料的形态和结构性能,结果显示碳纳米纤维在基质中的良好分散,对所有浓度的浓度。根据标准研究了机械特性。结果证明,在拉伸强度,弹性模量和冲击能量方面,总体增量为16%,37.5%和56%,其中在8wt的伸长率方面观察到总减少44.8%。%蒸气与0wt的纳米纤维矩阵相比。%。%。纳米复合材料的电磁屏蔽效果通过标准方案使用在15-3000MHz的频率范围内的同轴传输线测量技术确定。观察到纳米复合材料的电阻,薄层电阻和电阻率描绘了随着纳米纤维含量的增量而显着降低。然而,观察到复合材料内的纳米纤维含量,分散和网络形成对结构的电磁屏蔽效果性能进行了高度影响。

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