含矿物空心球的功能性级配混凝土板的火灾行为研究

Fire Pub Date : 2024-07-18 DOI:10.3390/fire7070256
Benedikt Strahm, Carl Niklas Haufe, Lucio Blandini
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引用次数: 0

摘要

功能级配混凝土(FGC)可在保持混凝土结构和功能要求以及提高回收能力的同时,显著减少混凝土构件的质量。这是通过在不需要材料的结构中插入球形矿物空心体来实现的。在本研究范围内,我们通过实验和数值计算研究了 FGC 板在火灾中的行为,并与相应的实心截面进行了比较。因此,FGC 试样被放置在试验炉中,并在火中暴露 90 分钟。对温度分布、弯曲承载能力和剥落行为进行了研究。实心截面的数值模拟结果与建筑规范中提供的数值十分吻合。然而,对于 FGC 截面,实验结果和数值结果之间在特征测量点的温度存在差异,这可能是由于对流造成的。实验结果表明,所研究的 FGC 截面的弯曲承载能力可能大于相应的实心截面。此外,正如分析所预期的那样,火灾试验证实 FGC 试样没有发生剥落。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigations of the Fire Behavior of Functionally Graded Concrete Slabs with Mineral Hollow Spheres
Functionally Graded Concrete (FGC) allows for a significant reduction in the mass of concrete components while maintaining their structural and functional requirements and improving recycling capacity. This is achieved by inserting spherical mineral hollow bodies into the structure where no material is required. Within the scope of this work, the behavior of FGC slabs exposed to fire is investigated both experimentally and numerically and compared to a corresponding solid cross-section. Therefore, FGC specimens are placed in a test furnace and subjected to fire exposure for 90 min. The temperature distribution, bending load-bearing capacity, and spalling behavior are investigated. The results of the numerical simulation of the solid cross-section are in good agreement with the values provided in the building code. However, for the FGC cross-section, differences in temperature at characteristic measurement points between the experimental and numerical results are observed, presumably due to convection. The experimental results suggest that the bending load-bearing capacity of the investigated FGC cross-section could be potentially greater than that of a corresponding solid cross-section. Furthermore, as expected through analytical analysis, the fire tests confirm that no spalling of the FGC specimens occurred.
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