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Atmospheric air-plasma treatments of polyester textile structures

机译:涤纶织物结构的大气等离子处理

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The effects of atmospheric air-plasma treatments on woven and non-woven polyester (PET) textile structures were studied by surface analysis methods: wettability and capillarity methods,as well as atomic force microscopy/lateral force microscopy (AFM/LFM).The water contact angle on plasma-treated PET decreased from 80 deg to 50-40 deg ,indicating an increase in the surface energy of PET fibres due to a change in the fiber surface chemical nature,which was confirmed by a higher fiber friction force measured by the LFM.The extent of water contact angle decrease,as well as the wash fastness of the treatment varied with the structure of the textile.Indeed the more porous the textile structure is (such as a non-woven),the fewer are the chain scissions of the PET at the fiber surface,during the plasma treatment.Thus,the level of surface oxidation and the weak boundary layers formation depend not only on plasma treatment parameters but also on the textile structure.
机译:通过表面分析方法:润湿性和毛细作用方法以及原子力显微镜/侧向力显微镜(AFM / LFM),研究了大气等离子体处理对机织和非织造聚酯(PET)纺织品结构的影响。等离子体处理过的PET的接触角从80度降低到50-40度,这表明由于纤维表面化学性质的变化,PET纤维的表面能增加了,这可以通过使用更高的纤维摩擦力来确认。 LFM。水接触角的减小程度以及处理的耐洗牢度随织物结构的变化而变化。实际上,织物结构越多孔(例如无纺布),链结越少因此,表面氧化的程度和弱边界层的形成不仅取决于等离子体处理参数,而且取决于织物结构。

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