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Strength of reinforced concrete footings without transverse reinforcement according to limit analysis

机译:根据极限分析的无横向加固钢筋混凝土基础的强度

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Isolated footings are reinforced concrete elements whose flexural and punching shear strengths are usually governing for their design. In this work, both failure modes and their interaction are investigated by means of the kinematical theorem of limit analysis. Previous works in this domain have traditionally considered failure mechanisms based on a vertical penetration of a punching cone. In this work, two enhanced failure mechanisms are investigated considering not only a vertical penetration of the punching cone, but also a rotation of the outer part of the footing, allowing to consider the role of both bottom and top reinforcements on the failure load. A rigid-plastic behavior with a Mohr-Coulomb yield criterion is considered for the concrete and a uniaxial rigid-plastic behavior is assumed for the reinforcement bars. The analysis shows that a smooth transition between flexural and punching shear failure occurs, corresponding to a flexural-shear regime. With respect to the punching shear failure regime, it is shown that the top reinforcement might play an important role (a fact usually neglected by previous investigations). Simplified formulations, allowing easy calculation of the load carrying capacity of footings, are derived and compared to the solutions according to limit analysis. Both theoretical and approximated solutions are finally compared with experimental results, showing consistent agreement. (C) 2016 Elsevier Ltd. All rights reserved.
机译:孤立的基础是钢筋混凝土元素,其抗弯强度和冲剪强度通常取决于其设计。在这项工作中,通过极限分析的运动定理研究了两种失效模式及其相互作用。传统上,该领域中的先前工作传统上是基于冲孔锥的垂直穿透力来考虑失效机制。在这项工作中,研究了两种增强的破坏机制,不仅考虑了冲孔锥的垂直穿透力,还考虑了底座外部的旋转,从而考虑了底部和顶部钢筋在破坏载荷上的作用。对混凝土考虑了具有Mohr-Coulomb屈服准则的刚塑性行为,并为钢筋假定了单轴刚塑性行为。分析表明,弯曲和冲切剪切破坏之间发生了平滑过渡,这与弯曲剪切状态相对应。关于冲切剪切破坏状态,表明顶部钢筋可能起着重要作用(以前的研究通常忽略了这一事实)。根据极限分析,得出简化的公式,可以轻松计算基础的承载力,并将其与解决方案进行比较。最后将理论解和近似解与实验结果进行比较,表明一致。 (C)2016 Elsevier Ltd.保留所有权利。

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