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Effect of fiber dosage and prestress level on shear behavior of hybrid GFRP-steel reinforced concrete I-shape beams without stirrups

机译:纤维用量和预应力水平对无箍筋混合GFRP钢I型梁的抗剪性能的影响

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Corrosion of steel reinforcements embedded in concrete elements is generally known as one of the most common reasons that shorten the service life of the structures. The present study aims to contribute in overcoming this problem by replacing steel stirrups as shear reinforcement of concrete beams using a steel fiber reinforced self-compacting concrete (SFRSCC). In the present research the potential of SFRSCC for improving the shear resistance of the beams without stirrups is explored. In order to further reduce the risk of corrosion in this type of beams, a hybrid system of flexural reinforcement composed of a steel strand and GFRP rebars is applied and properly arranged in order to assure a relatively thick concrete cover for the steel reinforcement. The GFRP bars are placed with the minimum cover thickness for providing the maximum internal arm and, consequently, mobilizing efficiently their relatively high tensile strength. The effectiveness of applying different dosages of steel fibers and varying the prestress force to improve the shear behavior of the designed beam are evaluated. By considering, the obtained experimental results, the predictive performance of a constitutive model (plastic-damage multidirectional fixed smeared crack model) implemented in a FEM-based computer program, as well as the one from three analytical formulations for estimating shear resistance of the developed beams were assessed. The FEM-based simulations have provided a good prediction of the deformational response and cracking behavior of the tested beams. All the analytical formulations demonstrated acceptable accuracy for design purposes, but the one proposed by CEB-FIP Modal Code 2010 predicts more conservative shear resistance. (C) 2016 Elsevier Ltd. All rights reserved.
机译:埋入混凝土构件中的钢筋的腐蚀通常被认为是缩短结构使用寿命的最常见原因之一。本研究旨在通过使用钢纤维增强自密实混凝土(SFRSCC)代替钢箍筋作为混凝土梁的抗剪钢筋,为克服这一问题做出贡献。在本研究中,探索了SFRSCC改善无箍筋梁的抗剪强度的潜力。为了进一步降低这种类型的梁的腐蚀风险,采用了由钢绞线和GFRP钢筋组成的抗弯钢筋混合体系,并进行了适当布置,以确保用于钢筋的相对较厚的混凝土覆盖层。 GFRP筋以最小的覆盖层厚度放置,以提供最大的内臂,从而有效地调动其相对较高的拉伸强度。评估了施加不同剂量的钢纤维和改变预应力以改善设计梁的剪切性能的有效性。通过考虑获得的实验结果,在基于FEM的计算机程序中实现的本构模型(塑性损伤多向固定涂抹裂纹模型)的预测性能,以及从三种分析公式中估算出的抗剪强度中的一种梁进行了评估。基于FEM的模拟为测试梁的变形响应和开裂行为提供了良好的预测。所有分析配方均显示出可接受的设计精度,但CEB-FIP Modal Code 2010提出的一种预测可预测更为保守的抗剪强度。 (C)2016 Elsevier Ltd.保留所有权利。

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