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New strut-and-tie-models for shear strength prediction and design of RC deep beams

机译:钢筋混凝土深梁抗剪强度预测的新支杆-模型

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摘要

Reinforced concrete deep beams are structural beams with low shear span-to-depth ratio, and hence in which the strain distribution is significantly nonlinear and the conventional beam theory is not applicable. A strut-and-tie model is considered one of the most rational and simplest methods available for shear strength prediction and design of deep beams. The strut-and-tie model approach describes the shear failure of a deep beam using diagonal strut and truss mechanism: The diagonal strut mechanism represents compression stress fields that develop in the concrete web between diagonal cracks of the concrete while the truss mechanism accounts for the contributions of the horizontal and vertical web reinforcements. Based on a database of 406 experimental observations, this paper proposes a new strut-and-tie-model for accurate prediction of shear strength of reinforced concrete deep beams, and further improves the model by correcting the bias and quantifying the scatter using a Bayesian parameter estimation method. Seven existing deterministic models from design codes and the literature are compared with the proposed method. Finally, a limit-state design formula and the corresponding reduction factor are developed for the proposed strut-and-tie model.
机译:钢筋混凝土深梁是具有低剪切跨度-深度比的结构梁,因此应变分布明显是非线性的,因此传统的梁理论不适用。拉杆-拉杆模型被认为是用于抗剪强度预测和深梁设计的最合理,最简单的方法之一。撑杆式模型方法使用对角撑杆和桁架机制描述了深梁的剪切破坏:对角撑杆机制表示混凝土斜向裂缝之间的混凝土腹板中产生的压缩应力场,而桁架机制则说明了水平和垂直腹板钢筋的作用。本文基于406个实验观测值的数据库,提出了一种用于精确预测钢筋混凝土深梁抗剪强度的新型支撑模型,并通过校正偏差和使用贝叶斯参数量化散点来进一步改进模型。估计方法。从设计规范和文献中现有的七个确定性模型与所提出的方法进行了比较。最后,为提出的压杆与拉杆模型开发了极限状态设计公式和相应的折减系数。

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