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Failure of unrestrained lightly reinforced concrete slabs under fire, Part II: Verification and application

机译:无约束的轻型钢筋混凝土楼板在火灾下的破坏,第二部分:验证和应用

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The simplified analytical models developed in the companion paper for the failure assessment of simply supported composite floor slabs without planar restraints are investigated further in this paper. In addition to taking account of membrane action and the material response at elevated temperature, these models allow for the bond developed between the reinforcement and the surrounding concrete. This is an essential requirement for defining a rational performance-based failure criterion for composite floor slabs at elevated temperatures, since the bond along with the characteristics of the reinforcement response govern failure by rupture of the reinforcement across full depth cracks. The kinematic assumptions inherent in the formulation of the complete and simplified variants of the models are first verified against detailed finite element analysis, and comparisons are made against a previously proposed model to identify common features and important benefits. Subsequently, the models are utilised in several examples which demonstrate their applicability, and the treatment of important factors related to boundary conditions and geometric configuration is discussed, highlighting in the process any restrictions on the application of the proposed models.
机译:在本文中进一步研究了简化的分析模型,该模型用于评估无平面约束的简单支撑复合楼板的破坏。除了考虑膜的作用和在高温下的材料响应外,这些模型还考虑了钢筋与周围混凝土之间的粘结。这是定义高温下复合地板的基于性能的合理破坏准则的基本要求,因为结合以及加固响应的特性通过整个深度裂缝的加固破裂来控制破坏。首先针对详细的有限元分析验证了模型的完整和简化变体的制定中固有的运动学假设,并与先前提出的模型进行了比较,以识别出共同的特征和重要的好处。随后,在几个示例中使用了该模型,这些模型证明了它们的适用性,并讨论了与边界条件和几何构型有关的重要因素的处理,并在此过程中着重指出了对所提出模型的应用的任何限制。

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