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Topographical effects of 02- and NH3-plasma treatment on woven plain polyester fabric in adjusting hydrophilicity

机译:02-和NH3-等离子体处理在织物平纹涤纶织物上的地形效应,调节亲水性

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摘要

Hydrophilisation of polyester textile materials has been investigated over the last twenty years using low-pressure and atmospheric plasmas. According to these studies, wettability and capillarity of fabrics can be significantly improved depending on the process gas used. In the present study, the effects of low pressure O2- and NH3- plasma on the morphology and topometry of fabrics on four different length scales, as well as the influence of the topographical changes of textile structures on the resulting water spreading and absorption rates were investigated. The results of the topographic characterisation using two non-contact optical methods and wettability measurements indicate that the modification of filament nano-topography cannot satisfactorily explain the drastic changes observed in wettability. Dimensional changes (relaxation and shrinkage) as well as changes in warp morphology and inter-yarn spaces are more decisive for inducing hydrophilicity in polyester woven plain fabrics than an increase in the surface nano-roughness of their filaments.
机译:在过去的二十年中,已经使用低压等离子体和大气等离子体对聚酯纺织材料的亲水化进行了研究。根据这些研究,根据所使用的工艺气体,可以显着改善织物的润湿性和毛细作用。在本研究中,低压O2-和NH3-等离子体对四种不同长度尺度上的织物形态和形貌的影响,以及织物结构的形貌变化对所得水扩散和吸收率的影响是调查。使用两种非接触式光学方法进行的形貌表征结果和润湿性测量结果表明,长丝纳米形貌的改性无法令人满意地解释所观察到的润湿性的急剧变化。尺寸变化(松弛和收缩)以及翘曲形态和纱间空间的变化比增加其长丝的表面纳米粗糙度对决定聚酯机织平纹织物的亲水性具有决定性作用。

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