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Shear strength of RC beams with stirrups using an improved Eurocode 2 truss model with two variable-inclination compression struts

机译:使用带有两个可变倾角压缩支柱的改进的Eurocode 2桁架模型,对带有箍筋的RC梁的抗剪强度

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The shear strength of reinforced concrete beams with stirrups can be assessed with strut-and-tie models based on the truss analogy. The Eurocode 2 formulation exploits such a possibility with a variable-angle inclination of the compression struts that is determined through the lower-bound theorem of plasticity. This approach tends to underestimate the shear capacity of lightly shear-reinforced beams where the concrete contribution, which is neglected in this formulation, is more significant. Based on this consideration but adopting an identical theoretical framework without adding a concrete contribution explicitly, this paper presents an upgrade of the EC-2 truss model incorporating two variable-inclination compression struts, whose inclination angles are determined through equilibrium conditions and the theory of plasticity. In this model, the upper compression strut may have lower inclination than the lower compression strut, which is mechanically motivated by the increase of shear stresses observed in the upper portion of the beam, in the neighborhood of the crack tip, following the trend of the principal compressive stress direction. This improved truss model enables the construction of a wider class of statically admissible solutions compared to the EC-2 single-strut approach. Closed-form expressions are derived for a variant of this model in which the two compression struts extend equally for half of the inner lever arm, which allows a simple and compact formulation for practical design purposes. Based on comparison with the well-established ACI-DafStb databases including more than 200 tests, the proposed model leads to values of the shear strength that are in very good agreement with experimental results and more accurate than the values obtained from the EC-2 procedure, despite the relatively comparable simplicity.
机译:带有箍筋的钢筋混凝土梁的抗剪强度可以通过基于桁架类比的拉杆-拉杆模型进行评估。 Eurocode 2公式利用通过可塑性下界定理确定的压缩支柱的可变角度倾斜度来利用这种可能性。这种方法往往会低估轻度剪力梁的剪力,而在此公式中忽略的混凝土贡献更为显着。基于此考虑,但采用相同的理论框架,但未明确添加具体贡献,本文提出了EC-2桁架模型的升级版,该模型合并了两个可变倾角压缩支柱,其倾斜角是通过平衡条件和可塑性理论确定的。在该模型中,上部压缩支柱的倾斜度可能比下部压缩支柱的倾斜度低,这是由梁顶部,在裂纹尖端附近跟随梁的趋势观察到的剪应力增加而产生的。主压应力方向。与EC-2单支柱方法相比,这种改进的桁架模型可以构造更多种类的静态允许解决方案。对于该模型的一种变体,得出了闭合形​​式的表达式,其中两个压缩支柱均等地延伸到内部杠杆臂的一半,这为实际设计目的提供了一种简单紧凑的公式。与包括200多个测试在内的公认的ACI-DafStb数据库进行比较后,所提出的模型得出的剪切强度值与实验结果非常吻合,并且比从EC-2方法获得的值更准确,尽管相对比较简单。

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