New Insights into the Investigation of Smoke Production Using a Cone Calorimeter

被引:0
作者
R. Sonnier
H. Vahabi
C. Chivas-Joly
机构
[1] Centre des Matériaux des Mines d’Alès (C2MA),Laboratoire MOPS E.A. 4423
[2] Université de Lorraine,undefined
[3] LNE,undefined
来源
Fire Technology | 2019年 / 55卷
关键词
Cone calorimeter; Smoke production; Flame inhibitor; Smoke suppressant;
D O I
暂无
中图分类号
学科分类号
摘要
Smoke release data from the cone calorimeter are often underused. They may provide additional information to better understand the fire reaction of polymers and the efficiency of flame retardants. A new method is proposed to investigate the smoke release in cone calorimeter tests and to correlate it to heat release, based on studies with pure and flame retarded polymers. Smoke release rate is plotted versus heat release rate and new parameters are pointed out. In particular, parameter A represents the smoke release per unit energy (in Joules) released. Its value increases when the carbon fraction and the aromaticity of a polymer increase. It can reach around 0.05 m2/kJ for epoxy resins but is null for well-known smoke-free polyoxymethylene (POM). HRR threshold (HRRth) represents the critical heat release rate above which smoke release is measured. Its value is close to 100 kW/m2 for polyolefins but decreases drastically for aromatic polymers. The approach developed in this study is potentially useful for assessing the smoke release of different materials for a heat release rate scenario chosen arbitrarily. The influence of two specific smoke suppressants and of two specific flame retardants on smoke release is also discussed and the proposed method allows for a better understanding of their role in smoke release.
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页码:853 / 873
页数:20
相关论文
共 28 条
  • [1] Milke JA(2000)Evaluating the smoke hazard from fires in large spaces Int J Eng Perform Based Fire Codes 2 94-103
  • [2] De Ris J(1994)The role of smoke-point in material flammability testing, fire safety journal Proc Fourth Int Symp 4 301-312
  • [3] Cheng X-F(2008)Flame size, heat release, and smoke points in materials flammability Fire Saf J 43 442-450
  • [4] Linteris GT(2012)Influence of char residues on flammability of EVA/EG, EVA/NG and EVA/GO composites Polym Degrad Stab 97 54-63
  • [5] Rafferty IP(2014)Study on correlations between the flammability and dynamic smoke properties of four decorative materials Proc Eng 84 498-505
  • [6] Wu X(1979)Opacity of black smoke: calculated variation with particle size and refractive index Appl Opt 18 1399-1403
  • [7] Wang L(2008)Effect of oxygen on flame heat flux in horizontal and vertical orientations Fire Saf J 43 410-428
  • [8] Wu C(2005)Thermal degradation of ethylene-vinyl acetate coplymer nanocomposites Polymer 46 6947-6958
  • [9] Yu J(2016)A method to study the two-step decomposition of binary blends in cone calorimeter Combust Flame 169 1-10
  • [10] Xie L(2012)Flame retardancy working mechanism of methyl-DOPO and MPPP in flexible polyurethane foam Fire Mater 36 1-15