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Mechanical property and anti-felting property of wool fabric treated with low-temperature plasma

机译:低温等离子体处理羊毛织物的力学性能和抗毡缩性能

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摘要

The radio-frequency low-temperature plasma treatment on wool has been recognized as an attractive process alternative to Kroy-Hercosett treatment using chlorine, because the former process is based on an eco-friendly one. However, even now the relationship between the anti-felting effect during the repetitive machine washing and the plasma treatment on wool has not been clarified. Plasma-treated wool is considered to have one distinctive feature of so-called stiff handle. Mechanical properties of untreated fabric and plasma-treated fabric were compared for four kinds of typical wool fabrics of which textile structures are different. As the result, it was clear that rigidity and hysteresis of bending and shearing properties increased greatly by the treatment, especially for the values of 2HB and 2HG5 of KES[1]. The intensity of drawing-out a yarn from woven fabric increased greatly by the treatment. The values of 2HB, 2HG5 and the intensity of drawing out strength increased also in the conditions of high moisture regain. Further more, high correlation was found between the change of those mechanical parameters and anti-felting effect. When plasmatreatment is carried out to a wool fabric, the surface will be oxidized strongly and about 36-50 nm of the outermost surface of wool fiber is shaved off, then, all the epicuticle layer and one-third of A-layer of wool fiber are lost. It is supposed that A-layer comes out to the surface and becomes hydrophilic by the measurement of weight loss rate. From the result of XPS analysis, it was clear that the chemical composition was changed by the Ar-plasma treatment. The cohesive force between the adjacent fibers increases and fiber movement is depressed. Anti-felting effect of Arplasma treated wool fabrics is caused by the depression of fiber movements even in the water. As the wool fiber surface becomes rough by the etching and functional groups which have strong interaction with water are formed on the surface, the wool fabric show larger hysteresis in bending and shearing. Therefore, wool fabrics become shrink-free by Ar-plasma treatment. When the plasma-treated fabrics were processed with weak amino-silicone solution, those mechanical parameters of KES and drawing-out intensity fell down to the level of original untreated fabrics. Anti-felting effect also diminished at the same time. © 2008 The Textile Machinery Society of Japan.
机译:羊毛的射频低温等离子体处理已被认为是氯替代Kroy-Hercosett处理的一种有吸引力的方法,因为前一种方法基于一种环保的方法。然而,即使到现在,在重复机器洗涤过程中的防结毛效果与对羊毛的等离子处理之间的关系仍不清楚。经过等离子处理的羊毛被认为具有所谓硬挺手柄的一个独特特征。比较了四种未经处理的织物和经等离子处理的织物的力学性能,这些织物的织物结构不同。结果,很明显,弯曲和剪切性能的刚度和滞后性通过处理而大大提高,特别是对于KES的2HB和2HG5值[1]。通过该处理,从机织织物拉出纱线的强度大大提高。在高回潮条件下,2HB,2HG5的值和拉伸强度也增加。此外,在那些机械参数的变化与防毡痕效果之间发现高度相关。当对羊毛织物进行等离子处理时,其表面将被强烈氧化,并刮掉羊毛纤维最外层表面的约36-50 nm,然后,所有表皮层和羊毛A层的三分之一迷路了。通过测定失重率,推测A层露出于表面而成为亲水性。从XPS分析的结果可以明显看出,通过Ar-等离子体处理改变了化学组成。相邻纤维之间的内聚力增加,纤维运动受到抑制。经过Arplasma处理的羊毛织物的防结毛效果是由纤维甚至在水中的运动降低引起的。随着羊毛纤维表面由于蚀刻而变得粗糙并且在表面上形成与水具有强相互作用的官能团,羊毛织物在弯曲和剪切时表现出较大的滞后性。因此,羊毛织物通过Ar-等离子处理变得无收缩。当用弱氨基硅氧烷溶液处理等离子处理的织物时,KES的那些机械参数和抽出强度下降到原始的未处理织物的水平。同时防缩效果也减弱了。 ©2008日本纺织机械学会。

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