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Refinement of Strut-and-Tie Model for Reinforced Concrete Deep Beams

机译:钢筋混凝土深梁的压杆模型

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摘要

Deep beams are commonly used in tall buildings, offshore structures, and foundations. According to many codes and standards, strut-and-tie model (STM) is recommended as a rational approach for deep beam analyses. This research focuses on the STM recommended by ACI 318-11 and AASHTO LRFD and uses experimental results to modify the strut effectiveness factor in STM for reinforced concrete (RC) deep beams. This study aims to refine STM through the strut effectiveness factor and increase result accuracy. Six RC deep beams with different shear span to effective-depth ratios (a/d) of 0.75, 1.00, 1.25, 1.50, 1.75, and 2.00 were experimentally tested under a four-point bending set-up. The ultimate shear strength of deep beams obtained from non-linear finite element modeling and STM recommended by ACI 318-11 as well as AASHTO LRFD (2012) were compared with the experimental results. An empirical equation was proposed to modify the principal tensile strain value in the bottle-shaped strut of deep beams. The equation of the strut effectiveness factor from AASHTTO LRFD was then modified through the aforementioned empirical equation. An investigation on the failure mode and crack propagation in RC deep beams subjected to load was also conducted.
机译:深梁通常用于高层建筑,近海结构和地基中。根据许多规范和标准,建议采用拉杆-拉杆模型(STM)作为进行深梁分析的合理方法。这项研究的重点是ACI 318-11和AASHTO LRFD推荐的STM,并使用实验结果来修改STM中钢筋混凝土(RC)深梁的支杆有效系数。这项研究旨在通过支撑杆有效性因子来完善STM,并提高结果准确性。在四点弯曲设置下,通过实验测试了六根不同剪切跨度与有效深度比(a / d)为0.75、1.00、1.25、1.50、1.75和2.00的RC深梁。将非线性有限元建模和ACI 318-11推荐的STM以及AASHTO LRFD(2012)获得的深梁的极限抗剪强度与实验结果进行了比较。提出了经验公式来修正深梁的瓶形支柱中的主要拉伸应变值。然后通过上述经验公式对AASHTTO LRFD的支撑杆有效系数方程进行了修改。还研究了钢筋混凝土深梁受力时的破坏模式和裂纹扩展。

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