期刊文献+

海泡石和EG对水性膨胀型钢结构防火涂料的影响 被引量:1

Effect of Sepiolite and Expandable Graphite on the Water-based Intumescent Flame-retardant Coatings for Steel Structure
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摘要 采用可膨胀性石墨(EG)和海泡石对传统的APP/PER/MEL膨胀型防火涂料体系进行改性,制备了一种新型水性超薄膨胀型防火涂料,并采用防火性能测试装置、热重分析(TGA)、差热重量分析(DTG)及X射线衍射(XRD)等方法对该防火涂料的耐火性能、热降解过程、炭化层结构进行了研究。热分析结果表明,海泡石与EG复合使用,将充分发挥它们的协同作用:EG在较低温度区域能够延缓炭化层的形成,而海泡石则能够在高温区域阻止炭化层氧化分解,并提高成炭率从而达到阻燃的目的。XRD结果显示,复合使用EG和海泡石能够促进炭化层中TiP2O7的形成,在高温阶段保护炭化层不被氧化。当防火涂料中添加质量分数3%海泡石和质量分数2%EG,涂层厚度为1.0 mm时,钢材的耐火时间达到72 min。 Expandable graphite(EG) and sepiolite were added to the traditional APP/PER/MEL systems to get a new kind of water-based intumescent flame retardant coatings for steel structure. The effects of EG/sepiolite on the fireproofing time and char formation of the coatings were investigated by using heat insulation test, thermo gravimetric analysis ( TGA ), derivative thermogravimetry ( DTG ) and X-ray diffraction(XRD). The results of TGA and DTG show that the use of EG and sepiolite together could bring the synergy effect of the flame retardant into full play:EG could postpone the formation of char layer at quite low temperature zone while sepiolite increased the stability of the residual char at higher temperature. XRD analysis indicates that the anti-oxidation performance of the coatings was improved by adding EG and sepiolite. In addition,the fireproofing time of the steel structure was up to 72 min when the film thickness of the coatings,which contained 3% sepiolite and 2% EG,was 1.0 mm.
出处 《精细化工》 EI CAS CSCD 北大核心 2012年第11期1131-1136,共6页 Fine Chemicals
基金 广东省高校产学研结合示范基地资助项目(cgzhzd0904)~~
关键词 可膨胀性石墨 海泡石 水性膨胀型防火涂料 炭化层 建筑用化学品 expandable graphite sepiolite water-based intumescent flame retardant coating char layer building chemicals
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参考文献12

  • 1Duquesne S, Magnet S, Jama C,et al. Intumescent paints : fire protective coatings for metallic substrates [ J ]. Surf Coat Technol, 2004,180/181 (3) :302 - 307.
  • 2Wang Guojian, Yang Jiayun. Influences of glass flakes on fire protection and water resistance of waterborne intumescent fire resistive coating for steel structure [ J ]. Progress in Organic Coatings, 2011,70 ( 2/3 ) : 150 - 156.
  • 3Li Guoxin,Liang Guozheng,He Tingshu,et al. Effects of EG and MoSi2 on thermal degradation of intumescent coating [ J ]. Polymer Degradation and Stability,2007,92 ( 4 ) : 569 - 579.
  • 4王震宇,韩恩厚,柯伟.可膨胀石墨改性APP/PER/EN防火涂料热降解行为[J].复合材料学报,2005,22(5):52-59. 被引量:21
  • 5刘学军,付若愚,咸才军,郭保文,郭奋.可膨胀石墨在膨胀型钢结构防火涂料中的应用[J].精细化工,2005,22(5):328-330. 被引量:30
  • 6Duquesne S, Le Bras M, Bourbigot S, et al. Thermal degradation of polyurethane and polyurethane/expandable graphite coatings [ J ]. Polym Degrad Stab ,2001,74 ( 3 ) :493 - 499.
  • 7贾堤,武梦笔,林文桐.海泡石用作建筑涂料增稠流变剂的研究[J].新型建筑材料,2003,30(3):30-32. 被引量:11
  • 8Liu Yun, Zhao Jing, Deng Cheng-Liang, et al. Flame-retardant effect of sepiolite on an intumescent flame-retardant polypropylene system [ J ]. Industrial & Engineering Chemistry Research ,2011,50 (4) :2047 -2054.
  • 9Zheng Yaping, Zheng Ying. Study on sepiolite-reinforced polymeric nanoeomposites [ J ]. Journal of Applied Polymer Science, 2005,99 (5) :2163 -2166.
  • 10熊家锦,裘陆道,师华,等.用于膨胀防火涂料现场检测的电炉和检测方法[P].ZL:200610167761.1,2006-12-26.

二级参考文献24

  • 1曹乃珍,沈万慈,温诗铸.膨胀石墨微观孔结构的特点及其表征[J].物理化学学报,1996,12(8):766-768. 被引量:16
  • 2章淑华.用红外光谱法研究海泡石的热相变[J].矿物学报,1985,5(3):234-238.
  • 3M Le Bras,S Bourbigot.Comprehensive study of the degradation of an intumescent EVA-based material during combustion[J].Journal of Materials Science,1999,34:5777-5782.
  • 4S Duquesne,M L Bras,S Bourbigot.Thermal degradation of polyurethane and polyurethane/expandable graphite coating s[J].Polymer Degradation and Stability,2001,74:493-499.
  • 5M Modesti,A Lorenzetti,F Simioni,G camino.Expandable graphite as an intmescent flame retardant in polyisocyanurate-polyurethane foams[J].Polymer Degradation and Stability,2002,77:195-202.
  • 6Weil E D, Hansen R H, Patel N. Fire and Polymers [M].Oxford: Oxford University Press, 1990. 110-129.
  • 7Xie R, Qu B. Synergistic effects of expandable graphite with some halogen free flame retardants in polyolefin blends [J].Polymer Degradation and Stability, 2000, 71(3): 375-380.
  • 8Howorth G F, Rogers J J, Watanabe T. Intumescent sheet material and paste with organic binder [P]. US Patent,5736109. 1998-04-07.
  • 9Camino G, Costa L. Mechanism o[ intumescense in fire retarded polymers [J]. Reviews in Inorganic Chemistry, 1986,8(1) : 69-78.
  • 10Duquesne S, Delobel R. A comparative study of the mechanism of action of ammonium polyphosphate and expandable graphite in polyurethane [J]. Polymer Degradation and Stability, 2002, 77(2): 333-350.

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