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首页> 外文期刊>Materials science forum >Determination of the Fire-Retardant Efficiency of Magnesite Thermal Insulating Materials to Protect Metal Structures from Fire
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Determination of the Fire-Retardant Efficiency of Magnesite Thermal Insulating Materials to Protect Metal Structures from Fire

机译:测定菱镁矿绝热材料阻燃效率,保护金属结构免受火灾

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This paper presents the results of fire test of an I-beam protected by a combined magnesite plate-magnesite mixture heat-insulating material. It was shown that a composite with an average thickness of 37 mm maintained an average temperature of 380 °C on the metal surface after 150 minutes of fire exposure, not exceeding the critical value of 500 °C. From 60 to 100 minutes of fire testing (furnace temperature of 980-1025 °C), the temperature of the metal did not exceed 100 °C. This was achieved both due to the high thermal insulation properties of the magnesite mixture, and due to gas and vapor release from the hydration products of magnesia cement. The developed fire-retardant material provides the first group of fire-retardant efficiency (150 minutes) and, after the fire test, is characterized by density of 352.4 kg/m~3 and compressive strength of 0.85 MPa, which is three times lower than the original.
机译:本文介绍了由组合的菱镁矿混合物隔热材料保护的I光束的火灾试验结果。 结果表明,在150分钟的火灾暴露后,平均厚度为37mm的平均厚度为380℃的平均温度,不超过500℃的临界值。 从60到100分钟的消防测试(炉温为980-1025°C),金属的温度不超过100°C。 这是由于菱镁矿混合物的高保温性能,并且由于气体和蒸汽从氧化镁水泥的水合产物释放而导致的。 发达的阻燃材料提供第一组阻燃效率(150分钟),并且在火试验后,其特点是352.4千克/ m〜3的密度,抗压强度为0.85MPa,这比下降三倍 原本的。

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