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Influence of Longitudinal Reinforcement Ratio on Shear Strength of RC Slender Beam Under Different Loading Rates

机译:纵向加固比对不同装载率下RC细长梁剪切强度的影响

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A primary current focus in concrete shear design is how to ensure the shear resistance of the concrete structures to withstand the possible adverse creep effects during the service life. All shear-carrying actions are supposed to depreciate due to the enhanced critical shear cracks under sustained loads. However, only a few studies that evaluated the performance of concrete structures failing in shear due to long-term loading. As the longitudinal tensile reinforcement strain influences the shear strength of RC beam, the shear resistance of the beam under sustained load may also be affected by the amount of longitudinal reinforcement. The present study aims at investigating the influence of flexural reinforcement ratio on the shear creep failures of reinforced concrete (RC) beams without stirrups by non-linear finite element analysis. In this study, the numerical model of RC beams with reinforcement ratios varying from 0.4% to 3.2% was evaluated under different loading rates. A loading rate of 1000 and 10000 times slower than the static loading rate were adopted to reveal the creep effects of RC beams.
机译:混凝土剪切设计中的主要电流焦点是如何确保混凝土结构的剪切电阻,以承受在使用寿命期间可能的不利蠕变效应。由于持续负载下的增强的临界剪切裂缝,所有剪切承载动作都应该贬值。然而,只有几项研究评估了由于长期装载而在剪切中失效的混凝土结构的性能。随着纵向抗拉强菌应变影响RC光束的剪切强度,由于持续负载下光束的剪切电阻也可能受到纵向加强量的影响。本研究旨在通过非线性有限元分析来研究抗弯曲混凝土(RC)梁的剪切蠕变故障对钢筋混凝土(RC)梁的剪切蠕变故障的影响。在该研究中,在不同的装载率下评估了从0.4%到3.2%的加固比的RC光束的数值模型。采用比静态加载速率慢1000和10000倍的装载速率来揭示RC梁的蠕变效应。

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