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An experimental setup for observation of smoldering-to-flaming transition on flexible foam/fabric assemblies

机译:用于观察柔性泡沫/织物组件上从闷烧到燃烧转变的实验装置

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摘要

Fires that involve upholstered furniture frequently begin as a smoldering combustion and, with time, transition to a flaming combustion, which sharply increases the level of hazard. Therefore, understanding how the compositions of the primary flammable components of the furniture, ie, flexible foam and upholstery fabric, affect this transition is important for fire safety considerations. In the current study, an experiment was designed to observe this transition using a sample consisting of 30 x 15 x 6 cm(3) rectangular foam block covered with 30 x 15 cm(2) piece of fabric. For a representative system of 1.8 lb/ft(3) (29 kg/m(3)) flexible polyurethane foam and 11 oz (0.37 kg/m(2)) cotton fabric, 0.69 transition probability was measured. This probability decreased by a factor of 4 when a small amount of phosphorus-based flame retardant, Fyrol (R) HF-9, was added to the foam. The transition to flaming was speculated to be associated with the formation of adjacent pyrolysis and smoldering regions within the foam. The pyrolysis region, dominated by anaerobic decomposition, provided gaseous fuel, the ignition of which resulted in the transition. The smoldering region, dominated by oxidation reactions at the solid-gas interface, generated the heat necessary to maintain the pyrolysis process and ignite the gaseous fuel.
机译:涉及软垫家具的火灾通常以阴燃燃烧开始,并随着时间的推移逐渐转变为燃烧燃烧,这大大增加了危险程度。因此,出于防火安全考虑,了解家具主要易燃成分的组成(即柔性泡沫和室内装饰织物)如何影响这种过渡非常重要。在当前的研究中,设计了一个实验来观察这种转变,使用的样品由30 x 15 x 6 cm(3)矩形泡沫块组成,覆盖有30 x 15 cm(2)的一块织物。对于1.8磅/英尺(3)(29千克/米(3))柔性聚氨酯泡沫和11盎司(0.37千克/米(2))棉织物的代表性系统,测量了0.69的转变概率。当向泡沫中添加少量磷基阻燃剂Fyrol HF-9时,这种可能性降低了4倍。据推测,向火焰的转变与泡沫内相邻的热解和阴燃区域的形成有关。以厌氧分解为主的热解区提供了气态燃料,其点燃导致过渡。在固体-气体界面处以氧化反应为主的阴燃区域产生了维持热解过程和点燃气态燃料所需的热量。

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