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Innovative Hybrid Fluorocarbon Coating on UV/Ozone Surface Modified Wool Substrate

机译:在紫外线/臭氧表面改性的羊毛基材上的创新混合氟碳涂料

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In an attempt to enhance the desired properties of textile substrates, hybrid fluorocarbon coating of the wool substrate together with UV/O-3 treatment was investigated. The application of fluorocarbons on the wool fabrics was found to have some processing problems due to the chemistry and structure of the wool fiber surface. Therefore, in this research, the use of UV/Ozone as a promising and environmentally friendly fast treatment for the surface modification of the wool substrate was studied. Both-sided UV/Ozone irradiation, in comparison to only one-sided UV/Ozone irradiation, resulted in the slightly better performance as evaluated for both pad-dry-cure and print-dry-cure fluorocarbon finishing treatments. By this novel hybrid finishing, the fabric outside finished with the fluorochemical exhibited hydrophobicity with 3M water repellency of 10 and the fabric inner side, which was in contact with the human body, kept its natural desirable moisture absorption. The UV/Ozone pre-treatment, by oxidizing the topmost layer of the fibers surface, imparted better durability of the fluorocarbon treatment to repeated washings and abrasion. However, UV/Ozone irradiation process could not overcome the drawback of fluorocarbon molecules reorientation after washing and/or abrasion, but the samples retrieved their hydrophobicity after hot-pressing. Overall, after the application of this novel method (both-sided UV/Ozone modified and then fluorochemical finish treated via the print-dry-cure process) on wool fabric, the inner side of the wool fabric, which was next to the skin, could provide desirable comforting moisture absorption for human body and protect the human skin from the negative hydrophobic effects of fluorocarbon chains; moreover, the outer side of the wool fabric exhibited highly durable (to repeated washings and abrasion) water and oil repellency properties to the outside world, helping the wool fabric display better dimensional stability with less shrinkage performance after repeated washings and higher air-permeability performance without detrimental effects on the tensile properties.
机译:为了增强纺织品基质的所需性能,研究了羊毛基质的混合碳氟化合物涂层以及UV / O-3处理。发现碳氟化合物在羊毛织物上的应用由于羊毛纤维表面的化学和结构而存在一些加工问题。因此,在这项研究中,研究了将UV /臭氧用作羊毛基材表面改性的一种有前途且环保的快速处理方法。与仅进行单面UV /臭氧照射相比,对UV /臭氧双面照射产生的效果略好于对焊盘干燥固化和印刷干燥固化的碳氟化合物整理处理。通过这种新颖的混合整理,用氟化合物整理的织物外部表现出疏水性,其3M疏水性为10,并且与人体接触的织物内侧保持了其天然的所需吸湿性。 UV /臭氧预处理通过氧化纤维表面的最上层,使碳氟化合物处理具有更好的耐久性,可以反复洗涤和磨损。但是,UV /臭氧辐照过程无法克服碳氢化合物分子在洗涤和/或磨损后重新取向的缺点,但是样品在热压后恢复了疏水性。总体而言,在羊毛织物上应用这种新方法(对双面UV /臭氧进行改性,然后通过印花-干固化工艺进行了含氟化学整理处理)之后,羊毛织物的内侧紧挨着皮肤,可以为人体提供理想的舒适吸湿性,并保护人体皮肤免受碳氟链的负面疏水作用;此外,羊毛织物的外侧对外界表现出高度耐久(经反复洗涤和磨蚀)的拒水拒油性能,帮助羊毛织物表现出更好的尺寸稳定性,经过反复洗涤后收缩率降低,透气性更高。对拉伸性能无不利影响。

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