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Formaldehyde-Free Wrinkle Resistant Treatment of Cotton Fabrics with Novel Aromatic Polycarboxylic Acids.

机译:新型芳香族多元羧酸对棉织物的无甲醛抗皱处理。

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摘要

Cotton always has a large share in the textiles and clothing market. Cotton apparel is soft and easy-care but it can cause wrinkles easily. Formaldehyde derivatives have been used for addressing cotton fabrics wrinkle problem for years but health concerns limit their applications. A novel approach to formaldehyde-free wrinkle-free cotton fabric was investigated. Aromatic acids were considered as effective crosslinking agents. Aqueous solutions of 1,2,4-benzenetricarboxylic anhydride (BNTCAN) were used in treatment of cotton fabrics to change their wrinkle property. Different factors, such as concentrations, catalysts, temperature, pH, and wetting agents, were studied. Tensile strength was tested to check the damage level of the treated fabrics. Wrinkle recovery angles (WRA) of the cotton fabrics were tested to evaluate their wrinkle resistant performance. A reaction mechanism between cotton fabrics and BNTCAN was proposed. Results showed that BNTCAN was hydrolyzed into acid first, and the acid directly reacted with hydroxyl groups on cellulose to form ester bonds. This direct esterification reaction theory was supported by thermal and infrared analyses. Another two aromatic chemicals, 4,4'-oxydiphthalic anhydride (ODPA) and ethylene glycol bis(4-trimellitate anhydride) (EGBTA) were investigated. Since the structures are longer and more flexible, compared with BNTCAN, crosslinking efficiency and WRA of treated cotton fabrics were improved.
机译:棉花在纺织品和服装市场上一直占有很大份额。棉服装柔软且易于护理,但容易造成皱纹。甲醛衍生物已经用于解决棉织物的皱纹问题多年,但是出于健康考虑限制了它们的应用。研究了一种无甲醛,无皱纹的棉织物的新方法。芳族酸被认为是有效的交联剂。 1,2,4-苯三羧酸酐(BNTCAN)的水溶液用于处理棉织物,以改变其起皱性能。研究了不同的因素,例如浓度,催化剂,温度,pH和润湿剂。测试拉伸强度以检查处理过的织物的损坏程度。测试了棉织物的皱纹回复角(WRA),以评估其抗皱性能。提出了棉织物与BNTCAN的反应机理。结果表明,BNTCAN先被水解成酸,然后酸直接与纤维素上的羟基反应形成酯键。这种直接酯化反应理论得到了热分析和红外分析的支持。研究了另外两种芳族化学品,即4,4'-氧二邻苯二甲酸酐(ODPA)和乙二醇双(4-三甲酸酐)(EGBTA)。由于结构更长,更柔韧,与BNTCAN相比,处理后的棉织物的交联效率和WRA得到改善。

著录项

  • 作者

    Dong, Hao.;

  • 作者单位

    University of California, Davis.;

  • 授予单位 University of California, Davis.;
  • 学科 Textile research.
  • 学位 M.S.
  • 年度 2015
  • 页码 72 p.
  • 总页数 72
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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