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Improving the Dyeability and Anti-Wrinkle Properties of Cotton Fabric via Oxidized Raffinose

机译:通过氧化棉糖改善棉织物的可染养率和抗皱性能

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摘要

In the anti-wrinkle finishing of cotton fabrics, the decreased dyeability of the finished fabrics has always been a difficult problem. A new anti-wrinkle finishing mode was developed to solve this problem by changing the finishing sequence of fabric dyeing and anti-wrinkle. In this research, the partial oxidization of raffinose with sodium periodate generated multiple aldehydes, which acted as multifunctional cross-linkers and endowed cotton fabrics with anti-wrinkle and hydrophilic properties. The structural characteristics of oxyRa were analyzed by FTIR and 13C-NMR. Through response surface methodology (RSM), the finishing model of oxyRa was established from the influencing factors of catalyst concentration, pH, curing temperature and time, and the optimized finishing process: the catalyst concentration was 20.12 g/L, pH was 4.32, curing temperature was 150 °C and curing time was 120 s. Under this condition, the predicted wrinkle recovery angle (WRA) of the finished fabric was up to 249.76°, Tensile strength (TS) was 75.62%, Whiteness index (WI) was 70.69. Importantly, comparing the anti-wrinkle and dyeing performance of the fabric with anti-wrinkle and then dyeing and anti-wrinkle after dyeing, the oxyRa-treated fabrics showed better dyeing properties compared with previously reported dimethyldihydroxyethylene urea (DMDHEU), glutaraldehyde (GA), and 1,2,3,4-butanetetracarboxylic acid (BTCA). Analysis of the combined mechanism of different finishing agents and cellulose, demonstrated the reason why oxyRa can be used to change the order of dyeing and anti-wrinkle finishing.
机译:在棉织物的抗皱精加工中,成品织物的可染料性降低一直是一个难题。开发了一种新的抗皱纹精加工模式,通过改变织物染色和抗皱的精加工序列来解决这个问题。在该研究中,用钠周期产生多醛的棉子糖的部分氧化,其作用为多功能的交联剂和具有抗皱和亲水性的棉织物。通过FTIR和13C-NMR分析氧来的结构特征。通过响应表面方法(RSM),从催化剂浓度,pH,固化温度和时间的影响因素建立氧来的整理模型,优化的精加工方法:催化剂浓度为20.12g / L,pH为4.32,固化温度为150℃,固化时间为120秒。在此条件下,完成的织物的预测折皱回复角(WRA)达249.76°,拉伸强度(TS)为75.62%,白度指数(WI)为70.69。重要的是,将织物的抗皱和染色性能与抗皱和染色染色染色,氧解处理的织物与先前报道的二甲基二羟基亚乙烯脲(DMDHEU),戊二醛(GA)显示出更好的染色性能。和1,2,3,4-丁丁羧酸(BTCA)。不同精加工剂和纤维素的组合机理分析,证明了奥克拉可用于改变染色顺序和抗皱精加工的原因。

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