纺织材料的介电性能:分析近似和实验测量综述

Yusuke Yamada
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引用次数: 17

摘要

破译纺织材料的介电性能是如何由其内部成分编排的,具有深远的意义。基于纺织品的电子产品因其独特的电子和传统织物的结合特性而受到越来越多的关注,其性能和外形因素都严重依赖于介电性能。因此,了解纺织材料的介电特性对于纺织电子产品的成功设计和操作至关重要。虽然纺织材料的介电性能可以在一定程度上从其组成曲线估计,但最近的研究已经确定了各种其他因素也有重大影响。从材料表征的角度来看,纺织材料介电性能的这种依赖性产生了一种新的可能性——通过测量介电性能,在成功关联后,可以提取出各种内部成分的信息。鉴于这些重要的意义,本文综述了与纺织材料介电性能有关的各种基本理论和原理。为了给揭示影响纺织材料介电性能的各种复杂因素提供必要的依据,本文首先概述了电介质和极化机制的基础,然后概述了均匀化的概念和介电混合物理论。根据近年来的研究成果,讨论了纺织材料介电性能分析近似的主要优势、挑战和机遇,最后介绍了各种适合测量纺织材料介电性能的表征方法。本文的目标之一是为这个快速发展的跨学科领域的科学家和工程师建立一个实用的路标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dielectric Properties of Textile Materials: Analytical Approximations and Experimental Measurements—A Review
Deciphering how the dielectric properties of textile materials are orchestrated by their internal components has far-reaching implications. For the development of textile-based electronics, which have gained ever-increasing attention for their uniquely combined features of electronics and traditional fabrics, both performance and form factor are critically dependent on the dielectric properties. The knowledge of the dielectric properties of textile materials is thus crucial in successful design and operation of textile-based electronics. While the dielectric properties of textile materials could be estimated to some extent from the compositional profiles, recent studies have identified various additional factors that have also substantial influence. From the viewpoint of materials characterization, such dependence of the dielectric properties of textile materials have given rise to a new possibility—information on various internal components could be, upon successful correlation, extracted by measuring the dielectric properties. In view of these considerable implications, this invited review paper summarizes various fundamental theories and principles related to the dielectric properties of textile materials. In order to provide an imperative basis for uncovering various factors that intricately influence the dielectric properties of textile materials, the foundations of the dielectrics and polarization mechanisms are first recapitulated, followed by an overview on the concept of homogenization and the dielectric mixture theory. The principal advantages, challenges and opportunities in the analytical approximations of the dielectric properties of textile materials are then discussed based on the findings from the recent literature, and finally a variety of characterization methods suitable for measuring the dielectric properties of textile materials are described. It is among the objectives of this paper to build a practical signpost for scientists and engineers in this rapidly evolving, cross-disciplinary field.
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