纺织学报

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等离子体表面改性协同静电喷雾在车饰毛织物疏水整理中的应用

  

  • 出版日期:2016-08-15 发布日期:2016-08-15

Application of plasma modification in combination with electrostatic spraying in hydrophobic finishing of wool textiles for automotive decoration

  • Online:2016-08-15 Published:2016-08-15

摘要:

为寻求更为环保的方式对羊毛/羊绒车饰品进行疏水整理,利用射频低温等离子体协同静电喷雾技术对织物进行疏水整理。通过扫描电镜观察了织物原样、等离子体处理织物、静电喷雾疏水织物和等离子体处理后静电喷雾疏水织物4种样品的表面形貌变化,采用动态接触角测量仪测试了4种样品的黏附力、静态接触角和动态接触角。结果表明:由于等离子体处理对织物表面的刻蚀作用,使后续选用静电喷雾整理的疏水剂能更有效且均匀地吸附于纤维表面;等离子体处理使织物表面黏附力提高至98.39μN,静态接触角减小至107.9°,接触角滞后增加至83.39°;等离子体处理协同静电喷雾疏水整理的织物具有最低的黏附力及接触角滞后,且织物透气率和透湿率仅分别下降了2.9mm/s和384g/(m2·d),说明等离子体表面改性协同静电喷雾疏水整理具有可行性。

关键词: 射频等离子体, 静电喷雾, 疏水整理, 车饰毛织物

Abstract:

To explore a more environmental method for the hydrophobic finishing of wool/cashmere automotive decoration textiles, the fabrics were hydrophobically finished by radio frequency low-temperature plasma in combination with electrodtatic spraying.Thesurface morphology changes of original sample and the plasma-treated sample were characterized by scanning electron microscopy, as well as the ydrophobic sample finished by electrostatic spraying and the hydrophobic sample finished by plasma modification in combination with electrostatic spraying. The adhesive force, static contact angle and dynamic contact angle of above four samples were measured by a dynamic contact angle measurement instrument. The study revealed that the plasma treatment could etch the surface of the wool/cashmere sample, promoting the attachment and uniformity of hydrophobic agent; the plasma treatment cound improve the adhesive force to 98.39μN, decrease the static contact angle to 107.9° and increase the dynamic contact angle to 83.39°; and the hydrophobic sample finished by electrostatic spraying after plasma treatment possessed the lowest adhesive force and dynamic contsct angle than other samples, the air and moisture permeability of which wer slightly reduced by 2.9 mm/s and 384 g /(m2•d), respectively, indicating the feasibility of hydrophobic finishing using plasma modification on combination with electrostatic spraying. 

Key words: radio frequency plasma, electrostatic spraying, hydrophobic finishing, wool automotive decoration textile

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