Nonlinear Finite Element Modeling of Shear Behavior of Concrete Deep Beams Reinforced with Internal Glass Fiber-Reinforced Polymer Bars by ANSYS

Shuaaib A. Mohammed, S. Rafiq, Zana Aziz
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Abstract

The purpose of this paper is to numerically trace the behavior of concrete deep beams reinforced with internal Glass Fiber-Reinforced Polymer (GFRP) bars and containing no web reinforcement by using ANSYS program. For this purpose, a finite element model is used for concrete deep beams that previously examined in an experimental study and its predicted failure loads were compared with the actual failure loads. The results of the finite element model were in a good agreement with observations from the experimental study. The comparisons showed that the used model has the ability to capture the shear behavior, as well as load-deflection response and crack patterns of deep beams reinforced with internal GFRP bars in the entire range of loading. The paper is also covered a parametric study on shear span-to-depth (a/d) ratio, GFRP reinforcement ratio and concrete compressive strength which they usually have high impacts on the behavior of fiber-reinforced concrete beams. The results of the parametric study showed that the ultimate failure load of beams reinforced with GFRP bars was higher than that of steel-reinforced concrete beams. The maximum failure load was observed to decrease by decreasing the a/d ratio. The stiffness and ductility of the beams were increasing by increasing the reinforcement ratio.
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基于ANSYS的玻璃纤维加筋混凝土深梁抗剪性能非线性有限元模拟
本文利用ANSYS软件对不含腹板加筋的玻璃钢内筋混凝土深梁的受力性能进行了数值模拟。为此,对先前在试验研究中检验过的混凝土深梁采用了有限元模型,并将其预测破坏荷载与实际破坏荷载进行了比较。有限元模型计算结果与试验研究结果吻合较好。对比结果表明,所采用的模型能够捕捉GFRP内筋深梁在整个加载范围内的剪切特性、荷载-挠度响应和裂缝形态。本文还涵盖了剪切跨深比(a/d), GFRP配筋率和混凝土抗压强度的参数化研究,它们通常对纤维增强混凝土梁的性能有很大的影响。参数化研究结果表明,GFRP筋加固梁的极限破坏荷载高于钢筋混凝土梁。最大失效负荷随着a/d比值的减小而减小。随着配筋率的增加,梁的刚度和延性均有所提高。
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