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首页> 外文期刊>Fibers and Polymers >Wicking Properties of Polyamide 66 Twisted Nanofiber Yarn by Tracing the Color Alteration in Yarn Structure
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Wicking Properties of Polyamide 66 Twisted Nanofiber Yarn by Tracing the Color Alteration in Yarn Structure

机译:通过跟踪纱线结构中的颜色变化来提高聚酰胺66加捻纳米纤维纱的芯吸性能

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摘要

In view of the interest in wicking properties of these flexible structures, analysis of the wicking phenomena in nylon 6.6 nanofiber yarns is carried out by considering the twist rate effects. A novel method is used based on adding a pH-sensitive dye to yam interstructure and the analysis of color alteration of nanofiber yarn structure, resulting from a shift in pH, during the capillary rise of distilled water. The results show that the addition of pH-sensitive dye has no influence on the average nanofiber diameter and the wicking behavior of yarns. This study shows that in short durations, the kinetic of the capillary rise follows the Lucas-Washburn equation. The Lambertw, a mathematical function, has been incorporated, which helps measure an equivalent structural factor of nanofiber yarns and vertical wicking height at any given time considering the oravitational effects. The statistical results show that the average of equilibrium wicking height and capillary rise rate coefficient tend to decrease with increasing the nanofiber yarn twist, due to the reduction of continuity and size of capillaries.
机译:考虑到对这些柔性结构的芯吸特性的兴趣,通过考虑扭曲速率效应来分析尼龙6.6纳米纤维纱线中的芯吸现象。使用一种新方法,该方法基于在纱的内部结构中添加pH敏感染料并分析在蒸馏水的毛细上升过程中由于pH值变化而导致的纳米纤维纱结构的颜色变化。结果表明,添加pH敏感染料对平均纳米纤维直径和纱线的芯吸行为没有影响。这项研究表明,在短时间内,毛细管上升的动力学遵循Lucas-Washburn方程。引入了兰伯特数学函数Lambertw,考虑到空化效应,它可以在任何给定时间帮助测量纳米纤维纱的等效结构因子和垂直芯吸高度。统计结果表明,由于毛细管的连续性和尺寸的减小,平均芯吸高度和毛细管上升速率系数的平均值往往随着纳米纤维纱线捻度的增加而降低。

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