Performance Properties of Half-bleached Weft Knitted Fabrics Made of 100% Cotton Ring Yarns with Different Parameters

IF 0.7 Q3 MATERIALS SCIENCE, TEXTILES TEKSTILEC Pub Date : 2021-10-26 DOI:10.14502/tekstilec2021.64.188-196
Desalegn Atalie, Gashaw Ashagre
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引用次数: 1

Abstract

Knitted fabrics are distinguished by their outstanding comfort for clothing and for their rapid mass production. Though cotton knitted fabrics can provide better comfort, their physical appearance and service life are affected by many factors, and they have a propensity for pilling, abrasion and snagging. The main goal of this research work was to investigate the effect of yarn parameters on the abrasion, pilling and snagging resistance of half-bleached knitted fabrics. Six knitted fabrics were manufactured from 100% cotton carded ring yarn with a linear density of 21, 25, and 30 tex, with two yarn twist levels for each linear density. Except for yarn linear density and twist, the remaining yarn and machine parameters were constant, including fabric manufacturing. The knitted fabrics were treated using a half-bleach treatment before property evaluation. The results showed that knitted fabric made from a finer count of 21 tex with a higher yarn twist of 920 m−1 had the highest mass loss ratio of 2.12–10.76%, and the lowest abrasion resistance of 89–97.88% between 5,000 to 20000 abrasion cycles. The highest abrasion resistance of 96.4–98.9% (mass loss ratio of 1–3.5%) was recorded for a single jersey knitted fabric made from coarser yarn (30 tex) with the lower twist of 826 m−1. The abrasion resistance of knitted fabrics was significantly affected by the thickness of the fabric, while regression analysis proved that fabric thickness and mass loss ratio had very good correlation, with an adjusted R2 value of 93.8%. The snagging resistance of knitted fabrics increased as yarn twist and fineness increased. Pilling propensity increased as yarn linear density increased and twist decreased. Linear regression results revealed that yarn linear density and twist were highly correlated to abrasion resistance (mass loss method) at an adjusted R2 value of 98.6% or 0.986 after 20,000 rubs.
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不同参数全棉环纱半漂纬针织织物的性能
针织面料以其卓越的舒适性和快速的批量生产而闻名。虽然棉针织物可以提供更好的舒适性,但它们的物理外观和使用寿命受到许多因素的影响,并且它们有起球、磨损和打结的倾向。本研究的主要目的是研究纱线参数对半漂白针织物耐磨性、起球性和抗钩性的影响。六种针织织物由线密度为21、25和30tex的100%棉梳环纱制成,每种线密度有两个纱线捻度。除纱线线密度和捻度外,其余纱线和机器参数不变,包括织物制造。在性能评估之前,使用半漂白处理对针织物进行处理。结果表明,在5000至20000次磨损循环中,由细数为21 tex、纱线捻度为920 m−1的针织物的质量损失率最高,为2.12–10.76%,耐磨性最低,为89–97.88%。由粗纱线(30 tex)制成的低捻826 m−1的单层针织物的耐磨性最高,为96.4–98.9%(质量损失率为1–3.5%)。针织物的耐磨性受织物厚度的显著影响,而回归分析表明,织物厚度与质量损失率具有很好的相关性,调整后的R2值为93.8%。针织物的抗钩性随着纱线捻度和细度的增加而增加。起球倾向随着纱线线密度的增加和捻度的降低而增加。线性回归结果显示,在20000次摩擦后,纱线线密度和捻度与耐磨性(质量损失法)高度相关,调整后的R2值为98.6%或0.986。
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来源期刊
TEKSTILEC
TEKSTILEC MATERIALS SCIENCE, TEXTILES-
CiteScore
1.30
自引率
14.30%
发文量
22
审稿时长
12 weeks
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