Polyurethane foam and fire safety

被引:65
|
作者
Hirschler, M. M. [1 ]
机构
[1] GBH Int, Mill Valley, CA 94941 USA
关键词
polyurethane foam; fire safety; fire retardants;
D O I
10.1002/pat.1092
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
This paper presents a survey of the fire safety of flexible and rigid polyurethane foam. The principal uses of flexible polyurethane foam are in applications where full resiliency is required, namely in upholstery for furniture, mattresses, and filled bed products. A subcategory of this type of application is the use of the foam in transportation seating, including every type of vehicle: automobiles, buses (and school buses), trains (and subways), ships, and aircraft. The fire safety legally required for these various environments covers a broad range, between virtually nothing for private automobiles and the extreme fire safety associated with airplane seats. Polyurethane foam also forms part of construction products, and in this case the foam is generally not applied exposed (since this is almost never allowed) and is often used as part of composite systems. The fire testing is normally conducted in the composite application, with severe restrictions to general uses. Overall, polyurethane foam can be used safely for applications that require adequate fire safety only if it is appropriately fire-retarded or if the correct type of fire barriers (or alternate product design) is used. Copyright (C) 2008 John Wiley & Sons, Ltd.
引用
收藏
页码:521 / 529
页数:9
相关论文
共 50 条
  • [31] Phytic Acid/Sodium Alginate Coating to Enhance Flame Retardancy of Rigid Polyurethane Foam: A Novel Strategy for Fire Safety
    Wang, Hao
    Lin, Yongquan
    Sun, Junjie
    Wang, Xin
    Yu, Hailong
    Deng, Kai
    Zeng, Rong
    He, Minghai
    Tang, Gang
    Tao, Congxi
    JOURNAL OF APPLIED POLYMER SCIENCE, 2025,
  • [32] Fire performance of piperazine phytate modified rigid polyurethane foam composites
    Yang, Sujie
    Zhang, Bing
    Liu, Mengru
    Yang, Yadong
    Liu, Xinliang
    Chen, Depeng
    Wang, Bibo
    Tang, Gang
    Liu, Xiuyu
    POLYMERS FOR ADVANCED TECHNOLOGIES, 2021, 32 (11) : 4531 - 4546
  • [33] The piloted transition to flaming in smoldering fire retarded and non-fire retarded polyurethane foam
    Putzeys, Olivier M.
    Fernandez-Pello, A. Carlos
    Rein, Guillermo
    Urban, David L.
    FIRE AND MATERIALS, 2008, 32 (08) : 485 - 499
  • [34] Thermal stability and fire properties of conventional flexible polyurethane foam formulations
    Lefebvre, J
    Bastin, B
    Le Bras, M
    Duquesne, S
    Paleja, R
    Delobel, R
    POLYMER DEGRADATION AND STABILITY, 2005, 88 (01) : 28 - 34
  • [35] Enhanced fire behavior of rigid polyurethane foam by intumescent flame retardants
    Hu, Xiang-Ming
    Wang, De-Ming
    JOURNAL OF APPLIED POLYMER SCIENCE, 2013, 129 (01) : 238 - 246
  • [36] Experimental characterization of fire-induced response of rigid polyurethane foam
    Chu, TY
    Moore, JW
    Hobbs, ML
    Gritzo, LA
    Moya, JL
    MATERIALS AND PROCESS CHALLENGES: AGING SYSTEMS, AFFORDABILITY, ALTERNATIVE APPLICATIONS, BOOKS 1 AND 2, 1996, 41 (BK 1-2): : 722 - 733
  • [37] Fire safety of thermoplastic polyurethane based on pyromellitic dianhydride
    Jiao, Chuanmei
    Wang, Hongzhi
    Chen, Xilei
    FIRE AND MATERIALS, 2018, 42 (04) : 454 - 462
  • [38] Research on Fire Safety Parameters on Foam Gypsum Products
    Pulkis, Kristaps
    Iljins, Uldis
    Skujans, Juris
    Gross, Uldis
    ICHEAP12: 12TH INTERNATIONAL CONFERENCE ON CHEMICAL & PROCESS ENGINEERING, 2015, 43 : 1765 - 1770
  • [39] Effect of expandable graphite and molybdenum trioxide in nitrogen/phosphorus synergistic system on acoustic performance and fire safety in rigid polyurethane foam
    Lyu, Xiongxian
    Zhang, Huiping
    Yan, Ying
    JOURNAL OF APPLIED POLYMER SCIENCE, 2022, 139 (29)
  • [40] Study on combustion behavior and toxic gases in fire effluents of rigid polyurethane foam
    Wang, Jun-Sheng
    Han, Wei-Ping
    Liu, Dan
    Wang, Guo-Hui
    Zhang, Qing-Lin
    Gongneng Cailiao/Journal of Functional Materials, 2013, 44 (SUPPL.2): : 246 - 249