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Shear behavior of Reinforced Concrete (RC) beams with circular web openings without additional shear reinforcement

机译:圆形腹板开口的钢筋混凝土(RC)梁的抗剪性能

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The introduction of an opening into a Reinforced Concrete (RC) beam leads to a reduction to both the beam's stiffness and its overall structural capacity due to stress concentrations and local cracking around the opening. This paper uses both the experimental and finite element (FE) method to analyze the shear behavior of RC beams with opening. The shear span-to-depth ratios (a (v) /d), opening size, and opening location were considered as the main parameters. The beams were divided into three series according to the shear span-to-depth ratios. Three reinforced concrete beams without openings and one beam with openings were tested experimentally under two-point loading. These beams were considered as control beams so as to validate the FE model using ANSYS14.5 software. A total of 31 specimens were analyzed using ANSYS14.5 while considering the above mentioned parameters. Results showed that the openings located in a high shear region (the line connecting the load and support points) led to the early collapse of the beam. In addition, by comparing the experimental results with those of the non-linear FE analysis, it was concluded that both results were in accordance. An analytical equation for predicting the shear strength of RC beams with circular openings was then proposed, and the obtained results later compared with those from FE model. Furthermore, the developed FE models can serve as a numerical platform for performance predictions of RC beams with different web opening geometries.
机译:由于应力集中和开口周围的局部开裂,在钢筋混凝土(RC)梁中引入开口会导致梁的刚度及其整体结构能力降低。本文同时使用了实验方法和有限元(FE)方法来分析带开口的RC梁的抗剪性能。剪切跨度与深度之比(a(v)/ d),开口尺寸和开口位置被视为主要参数。根据剪切跨度与深度之比,将梁分为三个系列。在两点荷载下,对3个无孔的钢筋混凝土梁和1个有孔的梁进行了试验。这些光束被视为控制光束,以便使用ANSYS14.5软件验证有限元模型。在考虑上述参数的同时,使用ANSYS14.5分析了总共31个样本。结果表明,位于高剪切区域(连接负载点和支撑点的线)上的开口导致梁的早期塌陷。此外,通过将实验结果与非线性有限元分析的结果进行比较,得出的结论是两个结果都是一致的。提出了一个预测圆形开口RC梁抗剪强度的解析方程,并将所得结果与有限元模型进行了比较。此外,开发的有限元模型可以用作数值平台,以预测具有不同腹板开口几何形状的RC梁的性能。

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