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Limit Equilibrium Method-based Shear Strength Prediction for Corroded Reinforced Concrete Beam with Inclined Bars

机译:基于极限平衡法的钢筋锈蚀斜梁抗剪强度预测

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摘要

Shear strength is a widely investigated parameter for reinforced concrete structures. The corrosion of reinforcement results in shear strength reduction. Corrosion has become one of the main deterioration factors in reinforced concrete beam. This paper proposes a shear strength model for beams with inclined bars based on a limit equilibrium method. The proposed model can be applied to both corroded and uncorroded reinforced concrete beams. Besides the tensile strength of longitudinal steel bars, the shear capacity provided by the concrete on the top of the diagonal crack, the tensile force of the shear steel at the diagonal crack, the degradation of the cross-sectional area and strength of the reinforcements induced by corrosion are all considered. An experimental work on two groups accelerated corroded beams was performed. Good agreements were found between the proposed theoretical predictions and experimental observations.
机译:抗剪强度是钢筋混凝土结构广泛研究的参数。钢筋的腐蚀导致剪切强度降低。腐蚀已成为钢筋混凝土梁的主要劣化因素之一。提出了一种基于极限平衡法的斜杆梁抗剪强度模型。所提出的模型可以应用于腐蚀和未腐蚀的钢筋混凝土梁。除了纵向钢筋的抗拉强度外,对角裂缝顶部的混凝土提供的抗剪能力,对角裂缝处的抗剪钢筋的抗拉力,横截面的退化和钢筋的诱导强度被腐蚀都考虑在内。对两组加速腐蚀的梁进行了实验工作。在建议的理论预测和实验观察之间发现了很好的一致性。

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