火灾暴露薄板梁热性能试验研究

V. Albero, A. Espinós, E. Serra, M. L. Romero, A. Hospitaler
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引用次数: 3

摘要

钢-混凝土组合梁嵌入地板(薄地板)提供了各种优势,如地板厚度减少或易于安装地板下的技术设备。然而,当暴露在高温下时,与其他复合梁相比,这种类型在热行为方面表现出重要的差异。这些差异是由于它们的特殊结构,完全包含在混凝土地板深度内。此外,现行的欧洲钢-混凝土组合结构防火设计规范(EN 1994-1-2)没有提供任何简化的热模型来评估火灾时每个薄板部分的温度演变。此外,只有少数实验研究可以帮助理解这些复合梁的热行为。本文对薄楼板梁的热性能进行了试验研究。在测试装置中使用了电辐射板来产生热加热。对型钢下法兰与底板之间的热间隙进行了研究,发现热间隙是影响截面温度梯度的重要因素之一。实验活动是通过改变截面结构来开发的,以评估该参数对薄地板热行为的影响。最后,所进行的实验被用于开发和校准一个有限元热模型,这可能有助于进一步研究薄楼板复合梁的热行为。
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Experimental study on the thermal behaviour of fire exposed slim-floor beams
Steel-concrete composite beams embedded in floors (slim-floors) offer various advantages such as the floor thickness reduction or the ease of installation of under-floor technical equipment. However, this typology presents important differences in terms of thermal behaviour, as compared to other composite beams, when exposed to elevated temperatures. These differences are due to their special configuration, being totally contained within the concrete floor depth. Moreover, the current European fire design code for composite steel-concrete structures (EN 1994-1-2) does not provide any simplified thermal model to evaluate the temperature evolution of each slim-floor part during a fire. Additionally, only a few experimental studies can be found which may help understand the thermal behaviour of these composite beams. This paper presents an experimental investigation on the thermal behaviour of slim-floor beams. Electrical radiative panels were used in the test setup to produce the thermal heating. The thermal gap between the lower flange of the steel profile and the bottom steel plate was studied, being found to be one of the most influential elements over the cross-section temperature gradient. The experimental campaign was developed by varying the cross-section configuration in order to evaluate the influence of this parameter over the slim-floor thermal behavior. Finally, the experiments carried out were used to develop and calibrate a finite element thermal model which may help in further research on the thermal behaviour of slim-floor composite beams.
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