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Behaviour of Passive Fire Protection K-Geopolymer under Successive Severe Fire Incidents

机译:连续严重火灾事故下被动防火K-地聚合物的行为

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摘要

The performance of a fire resistant coating for tunnel passive fire protection under successive severe thermal loading is presented. The material falls under the class of potassium based geopolymers (K-geopolymer) and was prepared by mixing ferronickel (FeNi) slag, doped with pure alumina, with a highly alkaline potassium hydroxide aqueous phase. Its performance was assessed by subjecting a concrete slab with a five cm thick K-geopolymer coating layer into successive RijksWaterStaat (RWS) fire incidents. During the first test, the maximum measured temperature in the K-geopolymer/concrete interface was 250 °C, which is 130 °C lower than the RWS test requirement, while, during the second fire test, the maximum temperature was almost 370 °C, which is still lower than the RWS requirement proving the effectiveness of the material as a thermal barrier. In addition, the material retained its structural integrity, during and after the two tests, without showing any mechanical or thermal damages.
机译:提出了连续热负荷下隧道被动防火用防火涂料的性能。该材料属于钾基地质聚合物(K-地质聚合物)类别,是通过将掺有纯氧化铝的镍铁(FeNi)炉渣与高碱性氢氧化钾水相混合而制备的。通过对具有5厘米厚K-地聚合物涂层的混凝土板进行连续的RijksWaterStaat(RWS)火灾事故进行评估。在第一次测试中,K-地质聚合物/混凝土界面的最高测得温度为250°C,比RWS测试要求低130°C,而在第二次耐火测试中,最高温度几乎为370°C ,仍然低于RWS要求,证明了该材料作为隔热层的有效性。此外,该材料在两次测试期间和之后仍保持其结构完整性,而没有显示出任何机械或热损伤。

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