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The effect of reinforcement ratios on composite slabs in fire

机译:配筋率对火灾复合板的影响

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摘要

Public-domain software currently allows designers to incorporate the enhancement of fire resistance due to tensile membrane action of composite slabs into their analysis of building behaviour in fire. Based on the Bailey-BRE Method, it enhances slab capacity by optimising reinforcement size in order to carry its fire limit state loading at the required fire resistance time. The method assumes that protected edge beams maintain vertical support of the slab at its boundaries, only allowing for failure of compartmentation integrity by tensile fracture of mid-panel reinforcement or by concrete crushing at the corners. However, these beams deflect under their increased loading in fire, which can cause premature structural failure of the panel. It is imperative to determine the real contribution of reinforcement to tensile membrane action, considering the loss of edge support. This paper presents a series of finite element studies conducted with Vulcan, compared with the generic simplified method and the public-domain software, to determine the influence of reinforcement on the failure of slab panels at elevated temperatures.
机译:目前,公共领域的软件允许设计人员将由于复合板的拉伸膜作用而引起的耐火性增强纳入他们对火灾中建筑物行为的分析。它基于Bailey-BRE方法,通过优化钢筋尺寸以在所需的耐火时间承受其极限火灾状态载荷来增强板坯的承载能力。该方法假定受保护的边梁在其边界处保持板的垂直支撑,仅允许通过中面板钢筋的拉伸断裂或拐角处的混凝土压碎来破坏分隔完整性。但是,这些梁在增加的火荷载下会偏转,这可能会导致面板过早出现结构故障。考虑到边缘支撑的损失,必须确定增强材料对拉伸膜作用的真正贡献。与通用的简化方法和公共领域的软件相比,本文介绍了一系列用Vulcan进行的有限元研究,以确定增强对平板在高温下的破坏的影响。

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