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超疏水棉织物的硅水溶胶制备法

Preparation of Super-Hydrophobic Cotton Fabrics Based on Silica Hydrosols

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【作者】 徐丽慧蔡再生沈勇王黎明丁颖

【Author】 XU Lihui;CAI Zaisheng;SHEN Yong;WANG Liming;DING Ying;College of Fashion, Shanghai University of Engineering Science;College of Chemistry, Chemical Engineering and Biotechnology, Donghua University;

【机构】 上海工程技术大学服装学院东华大学化学化工与生物工程学院

【摘要】 采用水性溶胶-凝胶反应,制备超疏水纺织品。在表面活性剂作用下制备了含甲基纳米Si O2(M-Si O2)和十六烷基改性纳米Si O2(H-Si O2)水溶胶,分别采用两步法(即先用M-Si O2水溶胶对棉织物浸轧处理,再进行低表面能修饰)、一步法浸轧H-Si O2水溶胶,对棉织物进行超疏水整理。结果表明制备的M-Si O2和H-Si O2水溶胶较稳定,粒径分布较窄;而H-Si O2水溶胶更容易在棉纤维表面引入致密的低表面能粗糙疏水膜;与两步法相比,一步法整理棉织物接触角达到152.1°,滚动角为8°,沾水等级100,具有工艺简单、节省原料、动态疏水效果更佳的优势。

【Abstract】 Methyl hybrid nano-silica(M-Si O2) hydrosols and hexadecyl modified silica(H-Si O2) hydrosols were synthesized via water-based sol-gel reaction in the presence of surfactant to obtain excellent supe-rhydrophobic surfaces. Super-hydrophobic cotton surfaces were prepared via two-step process of padding with M-Si O2 nano-particles and subsequent low surface energy modification, and one-step process of padding with H-Si O2 hydrosol, respectively. The obtained M-Si O2 and H-Si O2 hydrosols were stable and had narrow size distribution. It was much easier for H-Si O2 hydrosol to introduce dense and rough hydrophobic films with low surface free energy onto the surface of cotton fibers. Compared with the two-step process to prepare superhydrophobic cotton fabrics, one-step process was simple and inexpensive. The cotton fabric treated by one-step process with better dynamic hydrophobicity had a water contact angle of 152.1°, a water roll-off angle of 8°, and water repellency rating of 100.

【基金】 2013年上海高校青年教师培养资助计划项目(ZZGJD13038)
  • 【会议录名称】 第十八届中国科协年会——分11 三品建设构建纺织产业一带一路新格局研讨会论文集
  • 【会议名称】第十八届中国科协年会——分11 三品建设构建纺织产业一带一路新格局研讨会
  • 【会议时间】2016-09-24
  • 【会议地点】中国陕西西安
  • 【分类号】TS195.25
  • 【主办单位】中国科学技术协会、陕西省人民政府
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