期刊文献+

密度对聚氨酯软泡收缩及燃烧行为的影响

Influences of density on the shrinkage and combustion behaviors of flexible polyurethane foam
下载PDF
导出
摘要 采用锥形量热仪研究不同密度聚氨酯软泡(FPUF)的燃烧行为,并根据摄像、体视显微镜所观察的样品形体及泡孔结构的变化来研究火灾条件下FPUF的收缩特性。研究结果表明,收缩是表层泡孔受热发生热解生成焦油所致的泡孔塌缩现象,焦油层下方泡孔结构基本没有变化;FPUF密度越大着火前的收缩速率越小,同一时刻表层泡孔热解生成的焦油层越薄。FPUF的着火燃烧可分为受热收缩、燃烧收缩和池火燃烧三个阶段。中高密度样品HRR曲线先出现平台后出现峰值,分别对应于燃烧收缩和池火阶段,且密度越大HRR曲线的平台越低、峰值越高,燃烧收缩阶段的FIGRA越小,而池火燃烧阶段的FIGRA越大。着火前的快速收缩导致低密度样品的HRR曲线不出现平台只呈现单峰。 In order to explore the influences of density on the shrinkage and the combustion behaviors of flexible polyurethane foam(FPUF)in simulated fire conditions,the heat release rate(HRR)data of FPUF specimens with different densities were measured by a cone calorimeter.The variations of specimen shape and cell structure were observed by using a camera and a microscope.The results showed that the shrinking originated from the pyrolysis of FPUF,which produced the tar and resulted in the collapse of surface cell exposed to the heat source.The cell structure below the tar hardly changed.As the density of FPUF increased,both the shrinkage rate before ignition and the tar thickness at 10 s decreased.The combustion of PFUF could be divided into three stages:shrinking before ignition,shrinking after ignition and pool fire.For medium-and high-density FPUF specimens the HRR curve had a platform followed by a peak and the fire growth index(FIGRA)curve(denoting the HRR divided by the time)had two peaks.As the density increased,the HRR platform decreased and the HRR peak increased,and the first FIGRA peak decreased and the second FIGRA peak increased.Due to significant shrinking before ignition the FPUF specimen of 15 kg/m 3 had only one HRR peak and one FIGRA peak.
作者 康文东 张筱毓 陈超 王勇 KANG Wendong;ZHANG Xiaoyu;CHEN Chao;WANG Yong(Key Laboratory of Rubber-plastics,Ministry of Education/Shandong Provincial Key Laboratory of Rubber-plastics, College of Environment and Safety Engineering,Qingdao University of Science and Technology,Qingdao 266042,China;Key Laboratory of Fire Prevention and Rescue Technology,Ministry of Public Security,Langfang 065000,China)
出处 《火灾科学》 CAS CSCD 北大核心 2018年第2期78-84,共7页 Fire Safety Science
基金 国家自然科学基金资助项目(51306097) 山东省自然科学基金资助项目(ZR2014EEM037)。
关键词 聚氨酯软泡 密度 收缩 泡孔结构 热释放速率 Flexible polyurethane foam Density Shrinking Cell structure Heat release rate
  • 相关文献

参考文献3

二级参考文献22

  • 1李小斌,曹宏斌,张懿.全水发泡硬质聚氨酯泡沫塑料技术研究进展[J].中国塑料,2004,18(7):1-4. 被引量:37
  • 2杨德修.重载铁路运输轨道结构面临的主要问题及强化措施[J].铁道标准设计,2005,25(12):10-12. 被引量:16
  • 3刘新民,柴正鹏.多功能复合板用聚氨酯硬质泡沫塑料的性能研究[J].新型建筑材料,2006,33(2):26-29. 被引量:9
  • 4Zhang Jun, Shields T J, Silcock G W H. Effect of melting behaviour on upward flame spread of thermoplastics[J]. Fire and Materials, 1997, 21 (1) : 1-6.
  • 5Ohlemiller T J, Shields J, Butler K. Exploring the role of polymer melt viscosity in melt flow and flammability behaviour[C]// New Developments and Key Market Trends in Flame Retardancy. Lancaster, PA, 2000: 1- 28.
  • 6Sherratt Jo, Drysdale D. The effect of melt flow process on the fire behaviour of thermoplastics [C]//Inter Flame 2001 9th International Fire Science and Engineering Conference. Greenwich, London, 2001 : 149-150.
  • 7Butler K, Ohlemiller T J, Literis G T. A progress report on numerical modelling of experimental polymer melt flow behaviour[C]// International Interflam Conference lOth Proceedings. Edinburgh, Scotland, 2004 : 937-948.
  • 8ISO 9705. Fire Tests-Full-Scale Room Test for Surface Product[S]. Geneva: International Standards Organization (ISO). 1993.
  • 9沈桂琴,光学金相技术,1992年
  • 10Lin Hongru,J Cell Plast,1991年,27卷,295页

共引文献45

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部