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Structural Parameters Affecting Electrothermal Properties of Woolen Knitted Fabrics Integrated with Silver-Coated Yarns

机译:影响覆银纱毛纺针织物电热性能的结构参数

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摘要

Recently, more and more researchers have focused on electrical textiles that can provide or convert energy to facilitate people’s lives. Knitting conductive yarns into ordinary fabrics is a common way for electrical textiles to transmit heat or electrical signals to humans. This paper is aimed at studying the resistance values and temperatures of electrothermal knitted conductive fabric (EKCF) subjected to certain voltages over time. Six types of EKCFs with structural differences were fabricated using a computerized flat knitting machine with intarsia technology. Uniform samples 10 × 10 cm in size were made from wool, as were two different specifications of silver-coated conductive yarns. The wool yarn and one silver-coated yarn were mixed to knit a resistance area 2 × 2 cm in size in the center of the EKCF to observe heating behaviors. The experiment results showed that when the EKCFs were subjected to certain voltages over time, the resistance values of the resistance area increased over a short time and then gradually decreased, and the temperature gradually increased in the first 1000 s and tended toward stability after a certain period of time. The structural coefficient between different knitted structures (which predicted the thermal properties of different EKCFs subjected to different voltages) was analyzed. These results are of great significance for predicting the electrothermal performance of EKCFs with different knitted structures. On the basis of these results, an optimized knitted structure was selected as the best EKCF for wearable textiles, and the findings contribute to the field of technological and intelligent electrothermal garments and related products.
机译:最近,越来越多的研究人员致力于可提供或转换能量以改善人们生活的电子纺织品。将导电丝编织成普通织物是电子纺织品将热量或电信号传递给人类的一种常见方式。本文旨在研究在一定电压下随时间变化的电热针织导电织物(EKCF)的电阻值和温度。使用带有嵌花技术的计算机横机,制造了六种结构不同的EKCF。用羊毛制成尺寸为10×10 cm的均匀样品,以及两种不同规格的涂银导电纱。将羊毛纱线和一根镀银纱线混合在一起,在EKCF的中心编织一个2×2 cm的阻力区域,以观察加热行为。实验结果表明,随着时间的流逝,当EKCFs受​​到一定的电压作用时,电阻区域的电阻值在短时间内增大,然后逐渐减小,在最初的1000 s内温度逐渐升高,并在一定温度后趋于稳定。一段的时间。分析了不同针织结构之间的结构系数(该系数预测了经受不同电压的不同EKCF的热性能)。这些结果对于预测不同编织结构的EKCF的电热性能具有重要意义。在这些结果的基础上,选择了一种优化的针织结构作为可穿戴纺织品的最佳EKCF,这一发现有助于技术和智能电热服装及相关产品领域。

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