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通风状况对乳胶泡沫材料燃烧特性影响 被引量:1
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作者 沈利铭 张明振 +2 位作者 黄冬梅 段鹏征 赵玉法 《工业安全与环保》 2020年第1期20-23,共4页
设计小尺寸实验平台,研究不同通风管道风速对乳胶泡沫材料燃烧特性的影响。在不同风速条件下进行实验,获得材料表面温度分布、质量损失速率、火焰高度和火蔓延速率等特性参数。实验结果表明,在管道风速为0,1.5,3,4.5,6 m/s时,平均火焰... 设计小尺寸实验平台,研究不同通风管道风速对乳胶泡沫材料燃烧特性的影响。在不同风速条件下进行实验,获得材料表面温度分布、质量损失速率、火焰高度和火蔓延速率等特性参数。实验结果表明,在管道风速为0,1.5,3,4.5,6 m/s时,平均火焰蔓延速率分别为0.24,0.20,0.23,0.25,0.24 cm/s,最大质量损失速率分别为2.80,2.26,2.65,3.18,3.63 g/s。在有风条件下,随着风速的增加,火焰燃烧过程变得更加剧烈,最大质量损失率变大。实验样品的燃烧过程可以分为3个阶段:初始生长、完全燃烧和熄灭。最大火焰高度发生在燃烧过程的第2阶段,不同管道风速下的最大火焰高度分别为96.39,72.83,90.68,94.96,95.32 cm。 展开更多
关键词 风速 火焰蔓延特性 乳胶泡沫
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国内外电缆及光缆燃烧性能分级体系探讨 被引量:3
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作者 冯军 包光宏 《建筑电气》 2015年第7期13-17,共5页
对国际电工委员会(IEC)、美国、欧盟及中国的电缆及光缆燃烧性能分级体系进行分析、比较和综述。通过研究发现:IEC仅发布了考核电缆的火焰蔓延距离、烟密度和无卤特性等单一的试验方法标准;美国主要针对电缆的火焰蔓延、产烟等特性分为... 对国际电工委员会(IEC)、美国、欧盟及中国的电缆及光缆燃烧性能分级体系进行分析、比较和综述。通过研究发现:IEC仅发布了考核电缆的火焰蔓延距离、烟密度和无卤特性等单一的试验方法标准;美国主要针对电缆的火焰蔓延、产烟等特性分为4个级别;欧盟于2014年颁布了新的燃烧性分级体系,该分级体系主要从电缆的火焰蔓延和热释放等特性分为7个级别,同时针对不同场所又从电缆的产烟、燃烧滴落物和酸度进行了附加分级;我国新发布的电缆及光缆燃烧性能分级体系与欧盟类似。 展开更多
关键词 电缆及光缆 燃烧性能分级 火焰蔓延特性 产烟特性 热释放特性 烟密度 腐蚀性 燃烧滴落物/微粒
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Evaluation on Combustion Characteristics of Finishing Materials for Exterior Walls
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作者 Oh-Sang Kweon Heung-Youl Kim Seung-Cho Yang 《Journal of Mechanics Engineering and Automation》 2015年第8期465-471,共7页
Existing fire test methods reply on measurement of the energy released rate to identify the combustion properties of a material. However, they are inadequate when assessing combustion characteristics of a composite ma... Existing fire test methods reply on measurement of the energy released rate to identify the combustion properties of a material. However, they are inadequate when assessing combustion characteristics of a composite material characterized by vertical flame spread and different inside/outside combustion behaviors. In addition, major factors that affect the flame spread outside the building include the combustion characteristics of materials used as well as air flow around a skyscraper. However, since it is highly difficult to analyze and forecast the air flow from a fire engineering viewpoint, an investigation of the flame spread characteristics of exterior walls of a building depends primarily on the combustion characteristics of materials. Hence, this study examined, using ISO 13785-2 testing method, the temperature changes and vertical flame spread behaviors of one of the finishing materials for exterior walls--(generic & fire-resistant) aluminium panels by a real-scale combustion experiment. According to the results of real-scale experiment, the maximum heat temperature of 987.7 ℃ was recorded seven minutes after the fire test was initiated while the fire-resistant aluminium panels showed the maximum heat temperature of 850.2℃ after exposed for approximately 12 min. The vertical flame spread properties put more emphasis on the time required to reach the maximum temperature rather than its magnitude and there was a five minutes difference between the materials. 展开更多
关键词 Finishing material exterior wall real (full)-scale fire test vertical flame spread combustible.
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