涂料工业 ›› 2010, Vol. 40 ›› Issue (1): 33-37.

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埃洛石对水性超薄膨胀型钢结构防火涂料防火性能的影响

刘 芳1,孙 令1,唐万雄2,蓝方维2,贾德民1,罗远芳1   

  1. 1. 华南理工大学材料科学与工程学院,广州 510641;2. 孙大化工科技有限公司,广东中山 528400
  • 出版日期:2010-01-31 发布日期:2019-05-31
  • 作者简介:刘芳(1964—),男,教授,博士,主要从事高分子材料的合成与改性研究。

Effect of Halloysite on the Fireproof Performance of Water-based Ultrathin Intumescent Fireproof Coating for Steel Structures

Liu Fang1,Sun Ling1,Tang Wanxiong2,Lan Fangwei2,Jia Demin1,Luo Yuanfang1   

  1. 1. College of Materials Science and Engineering, South China University of Technology, Guangzhou,Guangdong 510641, China; 2. SunDa Chemical Technology Co.,Ltd., Zhongshan 528400, China
  • Online:2010-01-31 Published:2019-05-31

摘要: 以聚丙烯酸酯乳液为基体树脂,多聚磷酸铵、三聚氰胺、季戊四醇等为主阻燃剂,埃洛石纳米管(HNTs)为阻燃协效剂,制备了水性超薄膨胀型钢结构防火涂料,采用模拟大板燃烧法和锥形量热仪对其耐火性能进行了研究,并用扫描电镜观察了膨胀炭层的表面形貌。结果表明:HNTs对防火涂料的耐火性能影响显著,当阻燃体系中 HNTs含量为 10.86%时,HNTs与主阻燃剂之间有阻燃增效作用,所制备防火涂料的耐火时间为 107min,点燃时间为 24s,热释放速率峰值与点燃时间比为 4.97,燃烧残余量高达 48.36%,且燃烧残余物表面致密,显示出优异的耐火性能。

关键词: 钢结构防火涂料, 膨胀阻燃体系, 埃洛石纳米管, 协同效应, 耐火性能

Abstract:

The title water-based ultrathin intumescent fireproof coating for steel structures was prepared by using acrylic latex as binder, ammonium polyphosphate, melamine and pentaerythritol as main flame retardant, halloysite nanotube(HNTS) as flame retardant synergist. Its fireproof performance was investigated by simulated big panel combustion method and Cone Calorimeter. The surface morphology of char residues formed was characterized by SEM. The results showed that HNTS has greatly influence on fire-resisting perfoemance of fireproof coating. When content of HNTs is 10. 86% in flame retardant system, there exists synergistic effects between hnts and main flame retardant. The fireproof coating prepared exhibited excellent fire-resistance performance: flame-retardant time 107 min, ignition time 24 s, peak heat release rate/time to ignition(PK-HRR/TT1)4. 97, char residue 48. 36% and dense surface of char residues.

Key words: fire-resistant coating for steel structures; , intumescent flame retardant system,  halloysite nanotube,  synergistic effect; , fire-resisting performance