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Temperature on structural steelworks insulated by inorganic intumescent coating

机译:无机膨胀涂料绝缘的结构钢厂的温度

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摘要

Predicting the fire resistance of structures has been significantly advanced by foil scale fire tests in conjunction with improved understanding of compartmental fire. Despite the progress, application of insulation is still required to parts of structural steelwork to achieve over 60 minutes of fire rating. It is now recognised that uncertainties on insulation properties hinder adaptation of performance based designs for different types of structures. Intumescent coating has recently appeared to be one of most popular insulation types for steel structures, but its design method remains to be confirmed by empirical data, as technical difficulties on the determination of the material properties at elevated temperatures exist. These need to take into account of further physiochemical transitions such as moving boundary and endothermic reaction. The impetus for this research is to investigate the applicability of the conventional differential equation solution which examines the temperature rise on coated steel members by an inorganic intumescent coating, provided that the temperature-dependent thermal/mechanical insulation properties are experimentally defined in lab scale tests.
机译:通过箔规模的防火测试以及对隔室防火的更好理解,预测结构的耐火性得到了显着提高。尽管取得了进步,但仍需要对钢结构部件进行绝缘处理,以达到60分钟以上的防火等级。现在已经认识到,绝缘性能的不确定性阻碍了基于性能的设计适用于不同类型的结构。膨胀型涂料最近似乎是钢结构中最受欢迎的绝缘类型之一,但是由于存在确定高温下材料性能的技术难题,膨胀型涂料的设计方法仍有待经验数据证实。这些需要考虑进一步的物理化学转变,例如移动边界和吸热反应。这项研究的推动力是研究常规微分方程解决方案的适用性,该解决方案可通过无机膨胀涂层检查涂层钢构件上的温升,前提是在实验室规模的测试中通过实验确定了温度相关的隔热/机械绝缘性能。

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