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Fire resistance of 19th century fireproof flooring systems: A sensitivity analysis

机译:19世纪防火地板系统的耐火材料:敏感性分析

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摘要

Typical fireproof flooring systems of the 19th century comprise of metal beams embedded within insulation materials that span between them, sometimes in the form of arches. The limited or non-existent fire resistance requirement of that era demands a thorough understanding of their structural fire response when dealing with their conservation. This requires suitable material property models. Historical records from different sources contain large variations in the thermal (insulation and metals) and mechanical (for metals) properties of the materials. In this research, the variations were placed within lower and upper boundary curves. A sensitivity study of the thermal behaviour of typical flooring systems was conducted. The results of this study were used to indicate the level of uncertainty in the thermal properties of the metals (cast iron, wrought iron and mild steel) and the ‘‘insulation’’ materials (‘‘early concrete’’ and masonry) that may be tolerated without introducing large inaccuracy (10%) in the structural temperature results. To assess the applicability of the proposed boundary curves for the mechanical properties of the metals, the second series of sensitivity analyses of structural performance was performed, using the temperature profiles from the thermal sensitivity study.
机译:金属的19世纪包括典型防火地板系统梁嵌入绝缘材料中使得它们之间跨度,有时在拱的形式。与他们的保护打交道时那个时代的限制或不存在的耐火规定要求的结构防火响应的透彻理解。这需要合适的材料属性模型。来自不同来源的历史记录包含在热的材料的特性变化大(绝缘和金属)和机械(为金属)。在此研究中,变体置于下部和上部边界曲线内。典型的地板系统的热行为的敏感性研究进行。该研究的结果被用来表示在金属的热性质的不确定性(铸铁,熟铁和软钢)的水平和“”绝缘“”材料(“”早混凝土“”和砖石),其可以无需在结构温度导致引入大的不准确性(> 10%)被容忍。为了评估该金属的机械性能所提出的边界曲线的适用性,进行了第二个系列的结构性能灵敏度分析中,使用的温度曲线从热敏感性研究。

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