碳纳米管纤维对不锈钢电磁屏蔽织物屏蔽效果的影响

IF 1 4区 工程技术 Q3 MATERIALS SCIENCE, TEXTILES International Journal of Clothing Science and Technology Pub Date : 2024-04-05 DOI:10.1108/ijcst-02-2024-0037
Zhe Liu, Yichen Yang, Xiuchen Wang
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引用次数: 0

摘要

目的不锈钢电磁屏蔽(EMS)织物被广泛用作抗电磁干扰(EMI)的防护材料。然而,这些织物主要通过反射来屏蔽电磁波,这会导致共振效应的形成,从而严重影响其防护能力,并可能对外部环境造成二次电磁污染。本文分析了 EMS 织物在不同极化方向上的屏蔽效果(SE)。此外,还设计了碳纳米管纤维的间距排列。根据实验数据和电磁理论分析,当碳纳米管纤维之间的间距小于特定距离时,不锈钢 EMS 织物的屏蔽效果会显著提高。织物在测试频率范围内表现出稳定的吸收特性,有效解决了单纯依靠反射屏蔽所产生的二次损伤问题。相反,当碳纳米管纤维之间的间距超过这个距离时,SE 就会减小。值得注意的是,在相同频率下,垂直极化方向的 SE 远远高于水平极化方向。
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Effect of carbon nanotube fiber on shielding effectiveness of stainless-steel electromagnetic shielding fabric

Purpose

Stainless-steel electromagnetic shielding (EMS) fabrics are widely applied as protective materials against electromagnetic interference (EMI). However, these fabrics primarily shield electromagnetic waves through reflection, which can lead to the formation of resonance effects that severely compromise their protective capabilities and potentially cause secondary electromagnetic pollution in the external environment.

Design/methodology/approach

In this paper, carbon nanotube fibers are added via spacing method to replace some stainless-steel fibers to impart absorbing properties to stainless-steel EMS fabric. The shielding effectiveness (SE) of the EMS fabrics across various polarization directions is analyzed. Additionally, a spacing arrangement for the carbon nanotube fibers is designed. The EMS fabric with carbon nanotube fibers is manufactured using a semi-automatic sample loom, and its SE is tested using a small window method test box in both vertical and horizontal polarization directions.

Findings

According to the experimental data and electromagnetic theory analysis, it is determined that when the spacing between the carbon nanotube fibers is less than a specific distance, the SE of the stainless-steel EMS fabric significantly improves. The fabric exhibits stable absorbing properties within the tested frequency range, effectively addressing the issue of secondary damage that arises from relying solely on reflective shielding. Conversely, as the spacing between the carbon nanotube fibers exceeds this distance, the SE diminishes. Notably, the SE in the vertical polarization direction is substantially higher than that in the horizontal polarization direction at the same frequency.

Originality/value

This study provides a new path for the development of high-performance EMS fabrics with good wave-absorption characteristics and SE.

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来源期刊
CiteScore
2.40
自引率
8.30%
发文量
51
审稿时长
10 months
期刊介绍: Addresses all aspects of the science and technology of clothing-objective measurement techniques, control of fibre and fabric, CAD systems, product testing, sewing, weaving and knitting, inspection systems, drape and finishing, etc. Academic and industrial research findings are published after a stringent review has taken place.
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