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高性能织物中嵌入环保纤维的纱线结构以改善吸湿和干燥性能。

Eco-Friendly Fibers Embedded Yarn Structure in High-Performance Fabrics to Improve Moisture Absorption and Drying Properties.

作者信息

Kim Hyun-Ah

机构信息

Korea Research Institute for Fashion Industry, 45-26, Palgong-ro, Dong-gu, Daegu 41028, Republic of Korea.

出版信息

Polymers (Basel). 2023 Jan 23;15(3):581. doi: 10.3390/polym15030581.

Abstract

This study examined the perspiration absorption and drying characteristics of eco-friendly fiber-embedded fabrics with different yarn structures. The wicking and drying rates of fifteen fabrics made from quadrilobal PET, Lyocell, and bamboo fibers were measured using two evaluation methods and compared with the pore diameter and hygroscopic characteristics of the constituent fibers in the yarns. The sheath/core yarn structure played a vital role in improving the moisture absorption and drying properties of the eco-friendly fibers embedded in high-performance fabrics, which was partly affected by the hygroscopicity and non-circular cross-section of constituent fibers in the yarns. Superior perspiration absorption and drying properties among the various eco-friendly high-performance fabrics were observed in the quadrilobal PET/Lyocell sheath/core and quadrilobal PET/bamboo spun yarn fabrics. By contrast, the PET/Lyocell Siro-fil, bamboo spun, and hi-multi PET yarn fabrics exhibited inferior moisture absorption and drying properties. In particular, the evaluated results between transverse and vertical wicking measuring methods in absorption property showed a similar trend. In contrast, the drying property measured between the drying rate (min) at a steady state and the drying rate (g) at a transient state showed a different trend. Multiple regression analysis showed that the wicking property of the eco-friendly fiber-embedded fabrics was mainly related to the pore diameter, cross-sectional shape, and absorption property of the fibers in the yarns, and it was also highly associated with the drying characteristics of the fabrics. The market application of the sheath/core yarn structure using Lyocell and bamboo fibers with quadrilobal PET is available for producing eco-friendly fabrics that can contribute to environmental improvement and wear comfort related to the moisture absorption and fast-drying properties of the woven fabrics.

摘要

本研究考察了具有不同纱线结构的环保型纤维嵌入织物的吸汗及干燥特性。采用两种评估方法测量了由四边形聚酯纤维(PET)、莱赛尔纤维和竹纤维制成的15种织物的芯吸和干燥速率,并将其与纱线中组成纤维的孔径和吸湿特性进行了比较。皮芯纱结构在改善高性能织物中嵌入的环保型纤维的吸湿和干燥性能方面起着至关重要的作用,这在一定程度上受到纱线中组成纤维的吸湿性和非圆形横截面的影响。在四边形PET/莱赛尔皮芯纱和四边形PET/竹纤维混纺纱织物中,观察到各种环保型高性能织物具有优异的吸汗和干燥性能。相比之下,PET/莱赛尔赛络菲尔纱、竹纤维混纺纱和高复丝PET纱织物的吸湿和干燥性能较差。特别是,吸湿性方面横向和纵向芯吸测量方法之间的评估结果显示出相似的趋势。相比之下,稳态干燥速率(分钟)和瞬态干燥速率(克)之间测量的干燥性能显示出不同的趋势。多元回归分析表明,环保型纤维嵌入织物的芯吸性能主要与纱线中纤维的孔径、横截面形状和吸湿性能有关,并且还与织物的干燥特性高度相关。使用四边形PET与莱赛尔纤维和竹纤维的皮芯纱结构在市场上可用于生产环保型织物,这些织物有助于改善环境以及提高与机织物吸湿和快干性能相关的穿着舒适度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d56e/9920085/42a6ae0b359b/polymers-15-00581-g001a.jpg

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