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Mechanical model for the shear capacity of R/C beams without stirrups: A proposal based on limit analysis

机译:不带箍筋的钢筋混凝土梁抗剪承载力力学模型:基于极限分析的建议

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摘要

In this paper a rational model for the shear capacity of beams without shear reinforcement is presented, relating to the basic case of a straight beam subjected to combined shear and bending. The model is established using the upper bound principle derived from the Theory of Plasticity, and rests upon the observation that shear failures in slender beams typically evolve from already existing cracks, developed due to the influence of bending, and shaped under the combined influence of shear and bending. In the model, this observation is formalised into a characteristic crack pattern and a characteristic pattern of failure lines along existing cracks and within uncracked concrete. The influence of crack widths is taken into account using a relation between the crack failure condition and the crack width. The estimates of the model are shown to be in good agreement with a wide range of tests as well as with existing models. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在本文中,提出了一种不带剪力增强梁的抗剪承载力的合理模型,该模型涉及直梁受剪剪和弯曲共同作用的基本情况。该模型使用可塑性理论的上限原理建立,并基于以下观察结果:细长梁的剪切破坏通常是从已经存在的裂缝中产生的,这些裂缝是由于弯曲的影响而发展,并在剪切的综合影响下成形的。和弯曲。在模型中,该观察结果被形式化为沿现有裂缝和未破裂混凝土内部的特征裂缝模式和破坏线特征模式。利用裂纹破坏条件和裂纹宽度之间的关系来考虑裂纹宽度的影响。结果表明,该模型的估计值与各种测试以及现有模型都非常吻合。 (C)2016 Elsevier Ltd.保留所有权利。

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