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Objective Measurement of Hand Properties of Plasma Pre-treated Cotton Fabrics Subjected to Flame-Retardant Finishing Catalyzed by Zinc Oxide

机译:氧化锌催化等离子预处理棉织物阻燃整理后手感的客观测量

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In the present paper, flame resistance property is imparted to cotton fabrics by N-methylol dimethylphos-phonopropionamide (Pyrovatex CP New, FR), melamine resin (Knittex CHN, CL), phosphoric acid catalyst (PA), and ZnO/ nano-ZnO co-catalyst. The study shows that effectiveness of the FR-CL-PA reaction to form a crosslinked structure is enhanced by the co-catalytic reaction, resulting in enhancement of fabric's compressional recovering ability. However, the low pH reaction weakened the fabrics, resulting in poor tensile strength and toughness, stiffer hand feel, brittle and tendered polymer layers, a less spongy fabric structure, and a roughened fabric surface with fuzzy fibrils. In addition, atmospheric pressure plasma jet (APPJ) was used to enhance materials properties by sputtering or etching effect. The roughening effect of plasma treatment enhances tensile properties of treated specimens. Nevertheless, the positive effect is negligible after post-treatment with flame-retardant agents. Moreover, the increased inter-yarn friction enhances the subjective stiffness of fabric and the rigid effect is even worse for plasma pre-treated cotton specimens subjected to flame-retardant treatment. However, plasma pre-treated specimens have a compressible structure after post-treatment with flame-retardant agents. Moreover, neutralization of fiame-retardant-treated specimens helps minimize side effects of acidic finishing, irrespective of tensile and compression properties. The process also minimizes shear and bending rigid effect by removing unattached metal oxides from the fabrics.
机译:在本文中,通过N-羟甲基二甲基膦-苯丙酰胺(Pyrovatex CP New,FR),三聚氰胺树脂(Knittex CHN,CL),磷酸催化剂(PA)和ZnO /纳米ZnO赋予棉织物以阻燃性。助催化剂。研究表明,FR-CL-PA反应形成交联结构的有效性通过共催化反应得到增强,从而提高了织物的压缩回复能力。但是,低pH反应会使织物变弱,导致抗张强度和韧性差,手感变硬,聚合物层变脆和变软,织物的海绵更少,纤维表面粗糙且带有模糊的原纤维。此外,常压等离子体射流(APPJ)用于通过溅射或蚀刻效应来增强材料性能。等离子处理的粗糙效果增强了处理样品的拉伸性能。但是,用阻燃剂进行后处理后的积极作用可以忽略不计。此外,增加的纱线间摩擦力增强了织物的主观刚度,并且经过等离子体处理的棉样品经过阻燃处理后,其刚性效果甚至更差。但是,用阻燃剂进行后处理后,经过等离子体处理的标本具有可压缩的结构。此外,用阻燃剂处理的样品进行中和有助于最大程度地减少酸性整理的副作用,而与拉伸和压缩性能无关。该工艺还通过从织物上去除未附着的金属氧化物来最大程度地减小剪切和弯曲刚性的影响。

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