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首页> 外文期刊>Journal of Applied Polymer Science >Preparation and application of fluorocarbon polymer/SiO2 hybrid materials, part 2: Water and oil repellent processing for cotton fabrics by sol-gel method
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Preparation and application of fluorocarbon polymer/SiO2 hybrid materials, part 2: Water and oil repellent processing for cotton fabrics by sol-gel method

机译:氟碳聚合物/ SiO2杂化材料的制备和应用,第2部分:溶胶-凝胶法对棉织物进行拒水拒油处理

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This research employed different procedures for out water and oil repellent finish on cotton fabrics with fluorocarbon copolymer or its hybrid materials. The experimental results indicated that fabrics processed with fluorocarbon copolymer have larger contact angle for water and oil repellent finish, and the fabric processed with simultaneous bathing of fluorocarbon copolymer/ TEOS is the strongest but has poorer softness. Furthermore, when processing with chemical compounds, the processes or orders had little effect on the fabric's angle of contact and bleaching, but had more significant influence on strength. Regarding to washing fastness, after ten-time water washing, the angle of contact of processed fabrics decreased by about 3%. Overall, the fabric pretreated with TEOS, followed by fluorocarbon polymer, had the best balance of physical properties. (c) 2006 Wiley Periodicals, Inc.
机译:这项研究采用了不同的程序对含氟碳共聚物或其混合材料的棉织物进行拒水拒油处理。实验结果表明,用氟碳共聚物加工的织物对拒水拒油的接触角较大,同时浸浴氟碳共聚物/ TEOS的织物强度最高,但柔软度较差。此外,当使用化合物进行处理时,这些过程或顺序对织物的接触角和漂白度影响很小,但对强度的影响更大。关于耐洗牢度,在十次水洗之后,加工的织物的接触角降低了约3%。总体而言,先用TEOS预处理的织物,再用碳氟聚合物预处理,具有最佳的物理性能平衡。 (c)2006年Wiley Periodicals,Inc.

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