Study on Comfort Characteristics of Moisture Management Finished Microdenier Polyester Knitted Fabrics

IF 0.6 4区 工程技术 Q4 MATERIALS SCIENCE, TEXTILES AATCC Journal of Research Pub Date : 2023-05-13 DOI:10.1177/24723444231172220
M. Sampath, C. Prakash, J. Hayavadana, G. Indu, V. Kapoor
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Abstract

The influence of stitch length and knit structure on comfort characteristics of moisture management finish microdenier polyester knitted fabrics was determined to identify the suitable stitch length and knit structure. In order to study this effect, microdenier polyester filament yarn of 150 denier containing 108 filaments was taken. The yarn was converted to three knit structures such as single jersey, single airtex, and honeycomb, each containing three different stitch lengths of 2.6, 2.9, and 3.2 mm. The effect of stitch length and knit structure on comfort characteristics of moisture management finish knitted fabrics was significant. It was observed that single jersey fabrics showed quicker sinking times for the wetting test. In the wicking test, the wicking length increased continuously with stitch length for treated fabrics. In transverse wicking test for one drop of water and to reach saturation point, single jersey fabric shows a larger water spreading area. The time taken to reach saturation point is also shorter. In the moisture vapor transfer test for reduction in height and weight of water, single airtex fabrics show higher values. In the air permeability test, the single jersey structure exhibited higher air permeability values. It was observed that the single jersey structure with 2.9-mm stitch length had a superior performance with respect to comfort characteristics.
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润湿整理涤纶微旦针织物的舒适性研究
通过测定线长和编织结构对涤微旦整湿整理针织物舒适性的影响,确定合适的线长和编织结构。为研究这一效应,以150旦含108细丝的微旦涤纶长丝为研究对象。纱线被转化成三种针织结构,如单针织、单airtex和蜂窝结构,每种结构包含三种不同的针长,分别为2.6、2.9和3.2毫米。针长和针织物结构对排湿整理针织物的舒适性有显著影响。在湿性试验中,观察到单件针织织物的下沉时间更快。在排汗试验中,经处理织物的排汗长度随着针脚长度的增加而不断增加。在横向吸湿试验中,一滴水达到饱和点时,单件平纹织物的展水面积较大。达到饱和点所需的时间也更短。在降低水的高度和重量的水汽传递试验中,单织物的数值较高。在透气性试验中,单布结构透气性较高。结果表明,针长为2.9 mm的单针织物结构具有较好的舒适性。
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来源期刊
AATCC Journal of Research
AATCC Journal of Research MATERIALS SCIENCE, TEXTILES-
CiteScore
1.30
自引率
0.00%
发文量
34
期刊介绍: AATCC Journal of Research. This textile research journal has a broad scope: from advanced materials, fibers, and textile and polymer chemistry, to color science, apparel design, and sustainability. Now indexed by Science Citation Index Extended (SCIE) and discoverable in the Clarivate Analytics Web of Science Core Collection! The Journal’s impact factor is available in Journal Citation Reports.
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