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Intumescent coatings used for the fire-safe design of steel structures: A review

机译:用于钢结构防火设计的膨胀型涂料:综述

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The mainstream use of intumescent coatings for the design of fire-safe steel structures has fostered extensive research into the development of effective intumescent coatings and the assessment of their fire performance as thermal barrier to structural elements and materials. The research community has highlighted numerous challenges related to the current design framework based on standard fire resistance furnace testing and the current methodologies have been questioned due to its over-simplifications, limitations and uncertainties. In order to overcome these challenges, numerous research studies have proposed comprehensive approaches and methodologies to investigate the effectiveness of intumescent coatings exposed to a range of heating and fire conditions. This review covers the more recent developments in the field of fire testing and analysis of the fire performance of steel elements protected with intumescent coatings. Apart from the chemical formulation, the substrate boundary conditions, the applied coating thickness, the heating conditions and the fire test method appeared to be the key governing factors. All of them should be considered for a rigorous and systematic testing and design environment that allows the explicit quantification of the effectiveness of intumescent coatings. (C) 2019 Elsevier Ltd. All rights reserved.
机译:膨胀型涂料在防火型钢结构设计中的主流应用促进了对有效膨胀型涂料的开发以及评估其作为对结构元素和材料的热障的防火性能的广泛研究。研究界已经强调了与基于标准耐火炉测试的当前设计框架相关的众多挑战,并且由于其过于简化,局限性和不确定性,目前的方法受到了质疑。为了克服这些挑战,许多研究提出了综合的方法和方法来研究暴露于各种加热和着火条件下的膨胀型涂料的有效性。这篇综述涵盖了耐火测试领域的最新发展以及对用膨胀型涂料保护的钢构件的耐火性能的分析。除了化学配方外,基材边界条件,所施加的涂层厚度,加热条件和耐火测试方法似乎是关键的控制因素。所有这些都应考虑在严格,系统的测试和设计环境中进行,以明确量化膨胀型涂料的有效性。 (C)2019 Elsevier Ltd.保留所有权利。

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