Smoke suppression and synergistic flame retardancy properties of zinc borate and diantimony trioxide in epoxy-based intumescent fire-retardant coating

被引:0
作者
Feng Zhang
Pengfei Chen
Yong Wang
Shaoxiang Li
机构
[1] Qingdao University of Science and Technology,College of Environment and Safety Engineering
来源
Journal of Thermal Analysis and Calorimetry | 2016年 / 123卷
关键词
Zinc borate; Diantimony trioxide; Intumescent fire-retardant coating; Smoke suppression; Heat release rate;
D O I
暂无
中图分类号
学科分类号
摘要
In this article, smoke suppression and synergistic flame retardancy properties of zinc borate (ZB) and diantimony trioxide (Sb2O3) in epoxy-based intumescent fire-retardant (IFR) coating were investigated based on cone calorimeter test, smoke density test, scanning electron microscopy, thermogravimetric and Fourier transform infrared spectroscopic analyses. The measurement results of the dynamic combustion and smoke production behaviors and static smoke production behaviors of these IFR coatings showed that the values of heat release rate, smoke production rate, smoke factor and fire growth index all decreased significantly with the addition of ZB and Sb2O3. At the same time, the specific optical densities were remarkably reduced due to the existence of ZB and Sb2O3. These attractive data clearly demonstrated that the ZB and Sb2O3 had a good effect on smoke suppression and synergistic flame retardancy of the IFR coating. Besides, the scanning electron microscopy and the infrared spectroscopic analyses during coating thermal degradation were also carried out to explore the outstanding synergistic smoke suppression and flame retardancy mechanism of ZB and Sb2O3. With the melt of ZB and Sb2O3, a lot of heat was absorbed, and then, the glassy protective layer associated with the graphite char would effectively retard heat and suppress smoke.
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页码:1319 / 1327
页数:8
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[11]  
Zhang Q(2011)Microencapsulation of ammonium polyphosphate with hydroxyl silicone oil and its flame retardance in thermoplastic polyurethane J Polym Res 18 2229-2237
[12]  
Liu J(2005)Flame retardant epoxy resins from bisphenol-A epoxy cured with hyperbranched polyphosphate ester Polym Degrad Stabil 88 57-62
[13]  
Wang B(2012)New developments in flame retardancy of epoxy resins J Hazard Mater 239–240 270-278
[14]  
Jang S(2015)A new technology for separation and recovery of materials from waste printed circuit boards by dissolving bromine epoxy resins using ionic liquid Prog Org Coat 79 8-16
[15]  
Shi Y(2014)The protective properties of epoxy coating electrodeposited on Zn–Mn alloy substrate J Hazard Mater 266 114-121
[16]  
Hu Y(2013)Smoke suppression properties of ferrite yellow on flame retardant thermoplastic polyurethane based on ammonium polyphosphate RSC Adv 3 25030-25040
[17]  
Gui Z(2012)Comparative study on the thermal stability, flame retardancy and smoke suppression properties of polystyrene composites containing molybdenum disulfide and graphene J Wuhan Univ Technol 27 916-923
[18]  
Li J(2004)Flame retardancy, smoke suppression effect and mechanism of aryl phosphates in combination with magnesium hydroxide in polyamide 6 Polym Int 53 1901-1929
[19]  
Ke C(2012)Thermal decomposition, combustion and flame-retardancy of epoxy resins? A review of the recent literature J Appl Polym Sci 126 1337-1343
[20]  
Xu L(2014)Synergistic effect of ammonium polyphosphate and expandable graphite on flame-retardant properties of acrylonitrile–butadiene–styrene Fire Mater 38 92-99