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Electrically conductive polymeric bi-component fibers containing a high load of low-structured carbon black

机译:含有大量低结构炭黑的导电聚合物双组分纤维

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摘要

Melt spinning at semi-industrial conditions of carbon black (CB) containing textiles fibers with enhanced electrical conductivity suitable for heating applications is described. A conductive compound of CB and high density polyethylene (HDPE) was incorporated into the core of bi-component fibers which had a sheath of polyamide 6 (PA6). The rheological and fiber-forming properties of a low-structured and a high-structured CB/HDPE composite were compared in terms of their conductivity. The low-structured CB gave the best trade-off between processability and final conductivity. This was discussed in terms of the strength of the resulting percolated network of carbon particles and its effect on the spin line stability during melt spinning. The conductivity was found to be further enhanced with maintained mechanical properties by an in line thermal annealing of the fibers at temperatures in the vicinity of the melting point of HDPE. By an adequate choice of CB and annealing conditions a conductivity of 1.5 S/cm of the core material was obtained. The usefulness of the fibers for heating applications was demonstrated by means of a woven fabric containing the conductive fibers in the warp direction. By applying a voltage of 48 V the surface temperature of the fabric rose from 20 to 30 degrees C. (c) 2015 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2015, 132, 42255.
机译:描述了在半工业条件下的含碳黑(CB)的纺织纤维的熔体纺丝,所述纺织纤维具有适合于加热应用的增强的电导率。将CB和高密度聚乙烯(HDPE)的导电化合物掺入具有聚酰胺6(PA6)皮的双组分纤维的芯中。比较了低结构化和高结构化CB / HDPE复合材料的流变学和成纤性能。低结构的CB在可加工性和最终电导率之间取得了最佳平衡。就所得的碳颗粒的渗透网络的强度及其对熔体纺丝过程中纺丝稳定性的影响进行了讨论。通过在HDPE熔点附近的温度下对纤维进行在线热退火,发现在保持机械性能的情况下电导率进一步提高。由CB的适当选择和退火条件1.5 S /芯材cm的电导率得到。通过在经向上包含导电纤维的机织织物证明了该纤维在加热应用中的有用性。通过施加48V的电压,织物的表面温度从20摄氏度升高到30摄氏度。(c)2015 Wiley Periodicals,Inc. J. Appl。 Polym。科学2015,132,42255。

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