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Failure of Lightly Reinforced Concrete Floor Slabs with Planar Edge Restraints under Fire

机译:平面边缘约束的轻型钢筋混凝土楼板在火灾下的破坏

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摘要

This paper presents an analytical model for the failure of lightly reinforced concrete slabs under elevated temperature, considering simply supported boundary conditions with planar edge restraints. This model is typically applicable to the failure assessment of composite floor slabs under fire, where the steel deck is assumed to lose strength relatively quickly, leaving a lightly reinforced concrete slab, as supported by experimental evidence. The proposed model accounts for membrane action, which arises at large slab deformations, and important it presents a rational failure criterion based on the rupture of the steel reinforcement. In this respect, this is the first analytical slab model to consider the influence of bond between steel and concrete on reinforcement rupture, while also dealing with elevated temperatures, including the potentially negative effects of thermal curvature. Based on principles of mechanics, detailed analytical forms of the model are first presented and verified for each of the ambient and elevated temperatures cases. In each case, a simplified form of the analytical model. which is more suitable for practical design-oriented application, is also proposed and verified. The successful verification of the proposed analytical models, demonstrated against the results of appropriate nonlinear finite-element analysis, paves the way for their application in the design of composite floor slabs with planar edge restraints under fire.
机译:本文提出了一种考虑到简单支撑边界条件和平面边缘约束的轻质混凝土板在高温下破坏的分析模型。该模型通常适用于火灾下的复合楼板的破坏评估,在这种情况下,假定钢甲板相对较快地失去强度,而在实验证据的支持下,留下了轻度增强的混凝土楼板。所提出的模型考虑了膜作用,这种作用是在大的板坯变形时产生的,并且重要的是,它基于钢筋的破裂提出了合理的破坏准则。在这方面,这是第一个考虑钢和混凝土之间的粘结对钢筋断裂影响的分析平板模型,同时还处理了高温,包括热曲率的潜在负面影响。根据力学原理,首先介绍模型的详细分析形式,并针对每种环境和高温情况进行验证。在每种情况下,分析模型都是简化形式。还提出并验证了它更适合于面向实际设计的应用。针对适当的非线性有限元分析的结果证明了所提出的分析模型的成功验证,为它们在火灾中具有平面边缘约束的复合楼板设计中的应用铺平了道路。

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