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Surface Modification of Textiles by Glow Discharge Technique: Part II: Low Frequency Plasma Treatment of Wool Fabrics with Acrylic Acid

机译:辉光放电技术对纺织品的表面改性:第二部分:用丙烯酸对羊毛织物进行低频等离子处理

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In this study, wool fibers arc modified by low frequency plasma polymerization of acrylic acid regarding to its' hydrophobic character due to cuticular cells at their surfaces. Variables of the plasma glow discharge processes were power (40-100 W) and exposure time (5-45 min). The effect of plasma modification in the performance properties of wool were investigated on the basis of hydrophilicity of wool, average wrinkle recovery angle, and breaking strength. The surface chemical structures of fabrics were examined with x-ray photoelectron spectroscopy. The hydrophobic wool fabric became hydrophilic after all plasma treatments except one (40W-5 min). Average wrinkle recovery angle of the treated fabrics were between 157 and 178, while that of untreated fabric was 180. The treated fabrics had a little bit lower angles according to the untreated fabric.. However, even the lowest value as 157 means that the fabric has a good crease resistance property. The breaking strengths of fabrics were increased up to 26% after the plasma treatments.
机译:在这项研究中,羊毛纤维由于其表面的表皮细胞的疏水性而被丙烯酸的低频等离子体聚合改性。等离子体辉光放电过程的变量是功率(40-100 W)和曝光时间(5-45分钟)。基于羊毛的亲水性,平均皱纹恢复角和断裂强度,研究了等离子体改性对羊毛性能的影响。用X射线光电子能谱检查织物的表面化学结构。在所有等离子体处理之后,疏水性羊毛织物变成亲水性,除了一次(40W-5分钟)。经处理的织物的平均皱纹恢复角在157至178之间,而未经处理的织物的平均皱纹恢复角为180。与未经处理的织物相比,经处理的织物具有稍低的角度。但是,即使最低值为157,也意味着该织物具有良好的抗皱性能。等离子处理后,织物的断裂强度提高了26%。

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