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Influence of low-temperature plasma conditions on wicking properties of PA/PU knitted fabric

机译:低温等离子体条件对PA / PU针织物芯吸性能的影响

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Plasma surface treatment has been extensively applied in the textile industry for the modification of polymer materials. In this study low-temperature plasma (LTP) is used for surface treatment of polyamide/polyurethane (PA/PU) knitted fabric. The envisaged plasma effect is an increase in the surface energy of the treated textile, leading toward improved hydrophilic properties. The knitted fabric was treated by LTP using three non polymerizing gases: oxygen, air, and carbon dioxide. After plasma treatment, wettability of samples was tested through their wicking properties measuring capillary rise after water bath contact. The PA/PU knitted fabric samples treated with different plasma gases exhibited different hydrophilic performances. The influence of plasma variables (discharge power, time, pressure) was investigated. Although the chemical characteristics of elastan (PU) and nylon (PA) threads are different, the study has demonstrated that plasma treatment can in the same time alter the surface-wetting behavior of both the components of the knitted fabric. It was also shown how these treatments can be regulated to produce the desired level of hydrophilicity dependently on the request application. (C) 2007 Wiley Periodicals, Inc.
机译:等离子表面处理已在纺织工业中广泛应用于聚合物材料的改性。在这项研究中,低温等离子体(LTP)用于聚酰胺/聚氨酯(PA / PU)针织物的表面处理。预期的等离子体效应是增加处理后的纺织品的表面能,从而导致改善的亲水性。通过LTP使用三种非聚合气体(氧气,空气和二氧化碳)对针织物进行处理。经过等离子处理后,通过测量水浴接触后毛细管的上升,通过其芯吸性能测试了样品的润湿性。用不同等离子气体处理过的PA / PU针织物样品表现出不同的亲水性能。研究了等离子体变量(放电功率,时间,压力)的影响。尽管弹性纤维(PU)和尼龙纤维(PA)的化学特性不同,但研究表明等离子处理可同时改变针织物两个成分的表面润湿行为。还显示了如何根据要求的应用来调节这些处理以产生所需水平的亲水性。 (C)2007 Wiley期刊公司

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