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首页> 外文期刊>Surface & Coatings Technology >Influence of moisture on wettability and sizing properties of raw cotton yarns treated with He/O _2 atmospheric pressure plasma jet
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Influence of moisture on wettability and sizing properties of raw cotton yarns treated with He/O _2 atmospheric pressure plasma jet

机译:水分对He / O _2常压等离子体射流处理原棉纱润湿性和上浆性能的影响

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摘要

The He/O _2 atmospheric pressure plasma treatment can effectively improve the wettability and sizing properties of raw cotton yarns. However, the treatment effects may be greatly influenced by the moisture regain (MR) of the cotton yarn. In this study, raw cotton fibers, yarns and rovings with three different MRs (0.5%, 9.3% and 26.4%) are treated by atmospheric pressure plasma jet (APPJ) in He/O _2 at a ratio of 30:0.3L/min to study how MRs affect their wettability and sizing properties. SEM and XPS analyses show that cotton fibers with lower MRs are more efficiently etched and more polar bonds, such as COH/COC, OCO/CO and OCO, are imparted by the APPJ treatment. Consequently, the cotton yarn obtains higher wicking heights and smaller contact angles at lower MRs. The size adhesion analysis proves that the adhesion between the roving and the size becomes weaker as the MR increases. Observation of the cross sections shows that the roving with the lowest MR has a more uniform layer of size permeation than that for higher MR samples, while the side facing the plasma jet has a thicker size impregnation than the other side. The MR has negative effects on the surface etching, the improvement of hydrophilicity, sizing adhesion and size permeation uniformity of raw cotton yarns by APPJ.
机译:He / O _2大气压等离子体处理可有效提高原棉纱的润湿性和上浆性能。但是,棉纱的回潮率(MR)可能极大地影响处理效果。在这项研究中,采用常压等离子体射流(APPJ)在He / O _2中以30:0.3L / min的比例处理具有三种不同MR(0.5%,9.3%和26.4%)的原棉纤维,纱线和粗纱。研究MR如何影响其润湿性和施胶性能。 SEM和XPS分析表明,通过APPJ处理,具有较低MR的棉纤维被更有效地蚀刻,并且具有更多的极性键,例如COH / COC,OCO / CO和OCO。因此,棉纱在较低的MR处具有较高的芯吸高度和较小的接触角。尺寸粘附力分析证明,随着MR的增加,粗纱和尺寸之间的粘附力变弱。对横截面的观察表明,具有最低MR的粗纱比具有较高MR样品的粗纱具有更均匀的尺寸渗透层,而面对等离子流的一面具有比另一面更厚的尺寸浸渍。 MR对APPJ对原棉纱的表面蚀刻,亲水性,上浆附着力和尺寸渗透均匀性具有负面影响。

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