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Interaction between the Surface Properties of the Textiles and the Deposition of Cationic Softener

机译:纺织品表面性能与阳离子柔软剂沉积之间的相互作用

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In this study we categorised the surface properties of different knitted fabrics by their electro-kinetic behaviour and liquid up-take phenomena of the knitted textiles in order to understand the interaction of the surface properties of the textiles with cationic softener deposition. The electro-kinetic and liquid uptake properties of textiles were measured by their zeta-potential and liquid absorption ability. We also examined the influence of fabric softener on the surface characteristics of the textiles. We used solvent extraction followed by cationic titration to determine the cationic softener level present on the textiles. The major finding of this study was the different behaviour of individual loads and mixed loads in terms of cationic pick up from the rinse cycle softener. Fibre type plays the most critical role in determining the zeta potential of the fibre, filtration efficiency and water retaining capability of the fabrics, which in turn play the most important role in softener deposition on the textile. The charge on the textile surface is negative; this plays a key role in the deposition of the cationic softener in both kinds of loading conditions. Capillary diffusion could be a key parameter only in the individual load condition. It was found that there is a significant reduction in the liquid adsorption weight when fabrics are treated with levels of softener that are much higher than those associated with normal consumer use. As soon as the fabric comes into contact with the liquid, the fabric softener molecules transfer from the fabric to the liquid and reduce the surface energy of the liquid. This results in an increase in the wetting weight of the fabric.
机译:在这项研究中,我们通过针织物的电动力学行为和液体吸收现象对不同针织物的表面性能进行分类,以了解纺织品的表面性能与阳离子柔软剂沉积之间的相互作用。通过其ζ电位和液体吸收能力来测量纺织品的电动和液体吸收特性。我们还检查了织物柔软剂对纺织品表面特性的影响。我们使用溶剂萃取,然后进行阳离子滴定,以确定纺织品上存在的阳离子软化剂含量。这项研究的主要发现是就漂洗周期软化剂中阳离子的吸收而言,单个负载和混合负载的行为不同。纤维类型在决定纤维的ζ电位,织物的过滤效率和保水性方面起着最关键的作用,而继而在柔软剂在纺织品上的沉积中起着最重要的作用。纺织品表面的电荷为负。这在两种加载条件下均对阳离子软化剂的沉积起关键作用。仅在个别负载条件下,毛细管扩散才可能是关键参数。已经发现,当用比正常消费者使用的软化剂水平高得多的软化剂水平处理织物时,液体吸附重量显着降低。一旦织物与液体接触,织物柔软剂分子就从织物转移到液体中并降低液体的表面能。这导致织物的润湿重量增加。

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