Yin Jianjun, Ma Wensuo, Gao Zuobin, Lei Xianqing, Jia Chenhui
School of Mechatronic Engineering, Henan University of Science and Technology, 48 Xiyuan Road, Luoyang 471003, China.
Polymers (Basel). 2022 Jan 19;14(3):377. doi: 10.3390/polym14030377.
As the basic materials with specific properties, fabrics have been widely applied in electromagnetic (EM) wave protection and control due to their characteristics of low density, excellent mechanical properties as well as designability. According to the different mechanisms and application scenarios on EM waves, fabrics can be divided into three types: EM shielding fabric, wave-absorbing fabric and wave-transparent fabric, which have been summarized and prospected from the aspects of mechanisms and research status, and it is believed that the current research on EM wave fabrics are imperfect in theory. Therefore, in order to meet the needs of different EM properties and application conditions, the structure of fabrics will be diversified, and more and more attentions should be paid to the research on structure of fabrics that meets EM properties, which will be conductive to guiding the development and optimization of fabrics. Furthermore, the application of fabrics in EM waves will change from 2D to 3D, from single structure to multiple structures, from large to small, as well as from heavy to light.
作为具有特定性能的基础材料,织物因其低密度、优异的机械性能以及可设计性等特点,已在电磁波防护与控制领域得到广泛应用。根据对电磁波的不同作用机制和应用场景,织物可分为三种类型:电磁屏蔽织物、吸波织物和透波织物,本文从作用机制和研究现状方面对其进行了总结与展望,认为目前对电磁波织物的研究在理论上尚不完善。因此,为满足不同的电磁性能和应用条件需求,织物结构将趋于多样化,应更加关注符合电磁性能的织物结构研究,这将有助于指导织物的发展与优化。此外,织物在电磁波领域的应用将从二维向三维、从单一结构向多种结构、从大型向小型以及从重质向轻质转变。