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Uniformity and Penetration of Surface Modification Effects of Atmospheric Pressure Plasma Jet into Textile Materials

机译:大气压等离子体喷射到纺织材料的表面改性效应的均匀性和渗透

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The objective of this study was to investigate the uniformity and penetration of surface modification into textile materials including fiber, yarn and fabric treated by atmospheric pressure plasma jet (APPJ). Exposure to helium/oxygen plasma at atmospheric pressure made improvement in the wettability, dyeability, adhesion of single fiber, yam and woven fabric. The results showed that such a plasma jet was possible and effective in penetration of surface modification into textile structure. It can treat the whole surfaces of a single fiber, yarn filament in the treated parallel filament tow uniformly. For porous fabrics, rapid and efficient treatment on both sides of the treated samples was found to be ensured. And the degree and depth of penetration depended on the penetration of active species in plasma jet, which was affected by plasma parameters and materials structure. The former included treatment time, power, gas temperature, jet-to-substrate distance. The latter included number of twisting and fabric pore size. These findings would have important effects on industrialization of textiles treated by atmospheric pressure plasma jet.
机译:本研究的目的是研究表面改性的均匀性和渗透到包括纤维,纱线和由大气压等离子体喷射(APPJ)处理的纤维,纱线和织物的纺织材料。在大气压下暴露于氦/氧等离子体,改善了单纤维,山药和织物的润湿性,可染性,粘附性。结果表明,这种等离子体射流是可能的,可有效地渗透到纺织结构中。它可以均匀地处理处理的平行丝丝束中的单纤维的整个表面。对于多孔织物,发现在经处理的样品的两侧进行快速高效的处理。渗透程度和深度依赖于血浆射流中活性物种的渗透,受等离子体参数和材料结构的影响。前者包括治疗时间,功率,气体温度,射流到基板距离。后者包括扭曲和织物孔径的数量。这些发现将对大气压等离子体射流处理的纺织品的产业化的重要影响。

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