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Shear-flexural strength mechanical model for the design and assessment of reinforced concrete beams

机译:钢筋混凝土梁设计与评估的抗剪强度力学模型

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摘要

A conceptual model for the prediction of the shear-flexural strength of slender reinforced concrete beams with and without transverse reinforcement is presented. The model incorporates the shear transferred by the un-cracked concrete chord, along the crack's length, by the stirrups, if they are, and, in that case by the longitudinal reinforcement. After the development of the first branch of the critical shear crack, failure is considered to occur when the stresses at any point of the concrete compression chord reach the assumed biaxial stress failure envelope. A physical explanation is provided for the evolution of the shear transfer mechanisms, and the contribution of each one at ultimate limit state is formulated accordingly. Simple equations are derived for shear strength verification and for designing transverse reinforcement. The method is validated by comparing its predictions with the results of 1131 shear tests, obtaining very good results in terms of mean value and coefficient of variation. Because of its accuracy, simplicity and theoretical consistency, the proposed method is considered to be very useful for the practical design and assessment of concrete structures subjected to combined shear and bending.
机译:提出了一种用于预测带有或不带有横向钢筋的细长钢筋混凝土梁抗剪强度的概念模型。该模型将未破裂的混凝土弦沿着裂缝的长度,箍筋(如果有的话)以及在这种情况下通过纵向钢筋传递的剪力合并在一起。在临界剪切裂纹的第一分支发展之后,当混凝土压缩弦的任意点的应力达到假定的双轴应力破坏包络线时,就认为发生了破坏。为剪切传递机制的发展提供了物理解释,并据此制定了每个极限传递状态下的贡献。推导了简单的方程式以进行抗剪强度验证和设计横向钢筋。通过将该方法的预测结果与1131个剪切试验的结果进行比较,验证了该方法的有效性,在均值和变异系数方面均获得了很好的结果。由于其准确性,简便性和理论上的一致性,该方法被认为对于剪切和弯曲组合混凝土结构的实际设计和评估非常有用。

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