一种新型预应力复合楼盖体系在火灾中的承载性能试验研究

P. Meyer, P. Schaumann, Martin Mensinger, Suet Kwan Koh
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摘要

在德国,对于平板系统中的空心空间的规定要求承重钢结构具有30分钟的标准防火性能。在当前的一项国家研究项目中,根据空心空间的实际火灾负荷和通风条件,开发了空心空间的自然火灾场景。假设这种真实的火灾场景发生在空心空间,对一种创新的复合地板系统进行了两次大规模试验,以评估对地板系统承载性能的影响。综合和可持续的复合地板系统包括一个预应力混凝土板,一个无保护的,对分的热轧i型型材,复合榫在拼图或clocloidal形状,以及可拆卸的地板面板在i型型材的顶部。这个楼层系统保证了根据建筑的使用调整技术建筑装置的机会。这种综合和可持续的复合地板系统是在几个研究项目中开发的。标准耐火系数R90适用于楼板系统以下的火灾场景,已经被证明是成功的。本文介绍了在新开发的空心空间自然火灾情景下,创新复合地板系统的加热和承载性能的实验研究。在此过程中,将详细描述实现火灾场景空心空间的火灾测试的特殊测试装置。在空心空间的火灾情景之后,试件进行ISO标准火灾曲线,以建立无保护的i型型材的破坏温度。除了在加热阶段的温度发展和承重性能外,还将讨论冷却阶段和腹板开口对承重性能的影响。
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Experimental investigations on the load bearing behaviour of an innovative prestressed composite floor system in fire
In Germany, regulations for hollow spaces in slab systems require 30 minutes standard fire resistance of the load-bearing steel construction. Within a current national research project a natural fire scenario for the hollow space was developed based on realistic fire loads and ventilation conditions in the hollow space. Assuming this realistic fire scenario in the hollow space, two large scale tests on an innovative composite floor system were performed to evaluate the influence on the load bearing behaviour of the floor system. The integrated and sustainable composite floor system consists of a prestressed concrete slab, an unprotected, bisected hot rolled I-profile with composite dowels either in puzzle or clothoidal shape, and removable floor panels on the top of the I-profile. This floor system ensures the opportunity to adjust the technical building installations in accordance with the use of the building. This integrated and sustainable composite floor system was developed in several research projects. The standard fire resistance R90 for the fire scenario below the slab system has already been proven successfully. In this paper, experimental investigations regarding the heating and load bearing behaviour of the innovative composite floor system under the newly developed natural fire scenario of hollow spaces are presented. In doing so, the special test set-up to realise the fire tests for the fire scenario hollow space will be described in detail. After the fire scenario for the hollow space, the specimen was subjected to the ISO standard fire curve to establish the failure temperature of the unprotected I-profile. In addition to the temperature development and the load bearing behaviour inside the innovative floor during the heating phase, the cooling phase and the influence of a web opening on the load bearing behaviour will be discussed.
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