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3D finite element investigation of the compressive membrane action effect in reinforced concrete flat slabs

机译:钢筋混凝土平板受压膜作用效果的3D有限元研究

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Design codes for punching shear resistance of flat slabs are based on test results obtained from isolated slab-column connections. However, by testing isolated slabs, the compressive membrane action of a continuous slab-column system is ignored. This can result in lower punching shear strength compared to the actual strength of the real slab system. Testing continuous slab system is very uneconomical and in most cases not possible. In this paper, finite element analyses (FEA) are performed in order to investigate the effect of the compressive membrane action in flat concrete slabs by comparing results from isolated specimens and continuous floor systems. The adopted FE formulation and the material parameters were previously calibrated on an isolated test specimen (SB1). At first, the calibrated FEA are used to investigate the boundary conditions of slab-column connection (SB1). Then, these boundary conditions are modified, and the slab is also considered to have larger in-plane dimensions in order to examine its continuity. Finally, numerical analyses of existing punching shear tests that examine the compressive membrane action effect are conducted to show the accuracy of the FEA model. All the numerical analyses indicate that the punching shear capacity of a continuous slab is higher compared to the capacity of a conventional isolated slab. The predictive capability of the FEA models can allow for future investigations on the effect of the compressive membrane action to supplement the limited testing background on this area, and to provide recommendations for future design provisions. (C) 2017 Elsevier Ltd. All rights reserved.
机译:平板的抗冲剪强度设计规范基于从独立的平板-柱连接获得的测试结果。但是,通过测试隔离的楼板,可以忽略连续楼板-柱系统的压缩膜作用。与真实平板系统的实际强度相比,这可能导致较低的冲切剪切强度。测试连续板系统非常不经济,在大多数情况下是不可能的。在本文中,进行了有限元分析(FEA),以通过比较隔离样本和连续楼板系统的结果来研究平板混凝土楼板中压缩膜作用的影响。所采用的有限元配方和材料参数事先已在隔离的试样(SB1)上进行了校准。首先,使用校准的有限元分析来研究板-柱连接(SB1)的边界条件。然后,修改这些边界条件,并考虑将平板具有更大的平面尺寸,以检查其连续性。最后,对检查压缩膜作用效果的现有冲剪试验进行了数值分析,以显示FEA模型的准确性。所有数值分析表明,连续板坯的冲切剪切能力比传统的隔离板更高。 FEA模型的预测能力可以允许将来对压缩膜作用的影响进行研究,以补充该领域有限的测试背景,并为将来的设计提供建议。 (C)2017 Elsevier Ltd.保留所有权利。

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