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吉林化工学院学报, 2025, 42(11): 58-62     https://doi.org/10.16039/j.cnki.cn22-1249.2025.11.10
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玻璃防雨雾喷剂制备工艺
关昶,刘伶*,张慧
(吉林化工大学 石油化工学院,吉林 吉林 132022)
Preparation Process of Glass Anti-rain and Anti-fog Spray
GUAN Chang, LIU Ling *,ZHANG Hui
(School of Petrochemical Engineering, Jilin University of Chemical Technology, Jilin 132022, China)
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摘要 为解决玻璃表面雨雾附着导致的光学干扰与安全隐患,本文通过两步改性成功制备了具有高效防雨雾性能的纳米复合喷剂。以纳米SiO?为基材,首先采用3-异氰酸酯基丙基三甲氧基硅烷(IPTS)进行表面接枝改性,随后通过1H,1H,2H,2H-全氟癸基三甲氧基硅烷(PFDTMS)进行二次修饰,构建低表面能微纳结构。通过正交试验优化IPTS改性温度、IPTS质量百分比、PFDTMS加入量和改性时间。最优工艺条件为:IPTS改性温度50 ℃,IPTS质量百分比7%,PFDTMS加入量为1.5 g,PFDTMS改性时间为5 h。涂层在玻璃表面固化后的接触角达162.041°;防雨雾喷剂原液经2.3倍稀释后,接触角仍保持148.889°的超疏水效果。模拟实验验证显示,该疏水涂层具有良好的防水防雾性能。
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关昶
刘伶
张慧
关键词:   玻璃防雨雾喷剂    超疏水涂层    纳米SiO?    氟硅改性    正交试验
    
Abstract: 

To address optical interference and safety hazards caused by rain and fog adhesion on glass surfaces, this study successfully prepared a nanocomposite spray with efficient anti-rain and anti-fog performance through a two-step modification process. Using nano-SiO? as the substrate, surface graft modification was first performed with 3-isocyanatopropyltrimethoxysilane (IPTS), followed by secondary modification with 1H,1H,2H,2H-perfluorodecyltrimethoxysilane (PFDTMS) to construct a low surface energy micro-nano structure. The IPTS modification temperature, IPTS mass percentage, PFDTMS addition amount, and modification time were optimized through orthogonal experiments. Under the optimal process conditions determined as follows: IPTS modification temperature of 50°C, IPTS mass percentage of 7%, PFDTMS addition amount of 1.5g, and PFDTMS modification time of 5h, the contact angle of the coating after curing on the glass surface reached 162.041°. After diluting the anti-rain and anti-fog spray stock solution by 2.3 times, the contact angle still maintained a superhydrophobic effect of 148.889°. Simulation experiments verified that the hydrophobic coating exhibits excellent waterproof and anti-fog properties. This research provides a promising solution for the development of high-performance anti-rain and anti-fog materials, with potential applications in automotive, architectural, and photovoltaic glass fields.

Key words:   Glass Anti-rain and Anti-fog Spray      Superhydrophobic Coating      Nano-SiO?      Fluorosilicone Modification      Orthogonal Experiment
               出版日期:  2025-11-25      发布日期:  2026-03-13      整期出版日期:  2025-11-25
ZTFLH:  TB383.1   
引用本文:    
关昶, 刘伶, 张慧. 玻璃防雨雾喷剂制备工艺[J]. 吉林化工学院学报, 2025, 42(11): 58-62.
GUAN Chang, LIU Ling , ZHANG Hui. Preparation Process of Glass Anti-rain and Anti-fog Spray. Journal of Jilin Institute of Chemical Technology, 2025, 42(11): 58-62.
链接本文:  
https://xuebao.jlict.edu.cn/CN/10.16039/j.cnki.cn22-1249.2025.11.10  或          https://xuebao.jlict.edu.cn/CN/Y2025/V42/I11/58
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