Recent advances of preparing structure-enhanced conductive yarns to control their performance in potential applications

M. Y. H. Saty, Ibrahim Abdalla, Bismark Sarkodie, Amjad Farooq, Ahmed Elhassan, Yong Wang, Zhenzhen Xu
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Abstract

There has been a recent transition from conventional textiles to smart and electronic textiles, mostly due to the rise of wearable technology. Functional yarns have been created to fulfil the varied application needs in various environments. Conductive yarns have attracted considerable interest because of their exceptional softness, comfort, and diverse capabilities, such as electromagnetic shielding and soft sensors. This paper presents a comprehensive examination of spinning techniques utilized for the production of conductive yarns, incorporating a range of conductive additives, conductive fabrics, and conventional electrical elements. The text emphasizes that the performance of conductive yarns is significantly affected by their structure, which is dictated by the geometrical configurations of their elements, and the spinning geometry, commonly known as the twisted triangle. The performance of conductive yarns is primarily determined by the concentration of conductive components in their structure. Moreover, this paper examines the possible uses of conductive fabrics in several technical domains. The mentioned applications encompass antistatic packaging, heating elements, wearable electronics, smart membrane technology, data storage and transmission, sensors, actuators, and protection against electromagnetic interference and electrostatic discharge. Conductive textiles possess a versatile character that presents a wide range of opportunities for progress in multiple industries. To summarize, this review thoroughly examines the spinning methods used to create conductive yarns, with a particular focus on the significance of yarn structure in influencing their performance. Furthermore, it emphasizes the wide range of technological applications in which conductive textiles can be utilized.
制备结构增强型导电纱线以控制其潜在应用性能的最新进展
最近,主要由于可穿戴技术的兴起,传统纺织品开始向智能和电子纺织品过渡。为了满足各种环境下的不同应用需求,功能性纱线应运而生。导电纱线因其卓越的柔软性、舒适性和多种功能(如电磁屏蔽和软传感器)而备受关注。本文全面探讨了生产导电纱线所采用的纺纱技术,包括一系列导电添加剂、导电织物和传统电气元件。文中强调,导电纱的性能在很大程度上受其结构的影响,而导电纱的结构则由其元件的几何配置和纺纱几何形状(通常称为扭曲三角形)决定。导电纱的性能主要取决于其结构中导电成分的浓度。此外,本文还探讨了导电织物在多个技术领域的可能用途。这些应用包括防静电包装、加热元件、可穿戴电子设备、智能膜技术、数据存储和传输、传感器、致动器以及电磁干扰和静电放电防护。导电纺织品具有多功能性,为多个行业的发展提供了广泛的机遇。综上所述,本综述深入研究了用于制造导电纱线的纺纱方法,并特别关注了纱线结构对导电纱线性能的重要影响。此外,它还强调了导电纺织品的广泛技术应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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