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首页> 外文期刊>The Journal of the Textile Institute >Comparison of performances of macro, micro and nano silicone softeners
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Comparison of performances of macro, micro and nano silicone softeners

机译:宏观,微米和纳米有机硅柔软剂性能比较

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摘要

A lightweight plain-woven scoured and bleached cotton fabric was treated with macro, micro and nano silicone softeners each at three levels of concentration separately. The treated fabric samples were tested for hydrophilicity and various physical properties to evaluate the performance of the softeners. By using ANOVA it is established that there were significant changes in the degree of hydrophilicity, crease recovery, stiffness, bending modulus, drape as well as tearing strength. The macro softener made the fabric less flexible and less hydrophilic in nature than the same with the micro. The micro softener imparted maximum flexibility and the nano softener the best hydrophilicity. The softness, evaluated subjectively by the judges, confirmed that the nano-finished sample produced maximum softness and maximum durability followed by micro- and macro-finished samples. The scanning electron microscope photographs confirm that the macro softener mostly deposits on the fibre surface, while the nano softener penetrates inside the fibre and the micro softener takes up an intermediate status.
机译:用大,微型和纳米有机硅柔软剂分别以三种浓度水平处理轻质的平织的精练和漂白棉织物。测试处理过的织物样品的亲水性和各种物理性能,以评估柔软剂的性能。通过使用方差分析,可以确定亲水性,折痕回复性,刚度,弯曲模量,悬垂性和撕裂强度都发生了重大变化。宏观软化剂使织物的柔韧性和亲水性均低于微织物。微量柔软剂赋予最大的柔韧性,而纳米柔软剂赋予最佳的亲水性。法官们主观评估的柔软度证实,纳米加工的样品具有最大的柔软度和最大的耐久性,其次是微加工和宏观加工的样品。扫描电子显微镜照片证实,宏观软化剂主要沉积在纤维表面,而纳米软化剂渗透到纤维内部,而微软化剂占据中间状态。

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