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A method for calculating thermal resistance of the intumescent char layer of fired ultra-thin fire-retardant coating

机译:一种计算燃烧超薄阻燃涂层膨胀型炭层的热阻的方法

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摘要

Development of effective methods for quantificationally characterizing the thermal resistance of the intumescent char layer of fired fire-retardant coating is of interest in many academic researches and industrial applications. In this work, a novel approach is proposed to calculate the thermal resistance of the intumescent char layer produced after the ultra-thin fire-retardant coating exposed to fire. A correlation was established based on the relative thermal resistance of the char layer to that of steel plate and the surface temperature at the back of the coated steel plate under steady-state heat transfer. The thermal resistance of the steel plate was obtained about 0.009 K·m~2·W~(-1) by calculating the heat flux based on the radiation heat exchange involving three-surface enclosure model (flame, steel, and wall). The thermal resistances of the char layers without and with the layered double hydroxide (LDH) were 0.011 K·m~2·W~(-1) and 0.013 K·m~2·W~(-1), respectively. The results show that the external roughness and internal honeycomb structure can increase both the conductivity and the convective thermal resistances of the char layer to protect the steel structures. The porosity of the char layer is between 0.15 and 0.18, and its thermal conductivity is between 0.4 and 0.8 W·m~(-1)·K~(-1) in the process of fire.
机译:在许多学术研究和工业应用中,促进燃烧阻燃涂层膨胀型膨胀型膨胀层的热阻的有效方法的开发。在这项工作中,提出了一种新的方法来计算在暴露于火灾的超薄阻燃涂层后产生的膨胀型炭层的热阻。基于稳态热传递下涂层钢板背面的炭层与钢板的相对热阻和涂层钢板背面的表面温度建立相关性。通过基于涉及三个表面外壳模型(火焰,钢和墙壁)的辐射热交换来计算热通量,获得钢板的热阻约0.009k·m〜2·w〜(-1)。耐光层的耐热电阻和层状双氢氧化物(LDH)为0.011k·m〜2·w〜(-1)和0.013k·m〜2·w〜(-1)。结果表明,外部粗糙度和内部蜂窝结构可以提高电导率和炭层的对流热阻以保护钢结构。在火过程中,炭层的孔隙率为0.15和0.18,其导热率在0.4至0.8W·m〜(-1)·k〜(-1)之间。

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