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Analytical study on creep shear failures of RC slender beams without web reinforcement

机译:腹板无筋钢筋混凝土细长梁的蠕变剪切破坏分析研究

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Sustained load problems, which can cause excessive deformation and severe damage to concrete structures, have been considered in current worldwide design codes by applying reduction factors on the compressive and tensile strength of concrete. A reduction factor in the shear design may also be required due to the decrease of shear-transfer action corresponding to the increases of the shear cracks opening. However, only a few studies are examining the effect of creep on shear performance of concrete structures, and the results are still inconclusive. As a complement to the previous experimental works, this study aims to investigate the effect of loading rate on the shear capacity of RC slender beams by non-linear finite element (FE) analysis. A spaceaveraged constitutive model with fixed multi-directional cracks was employed in the simulation of diagonal shear failure. The present study analytically examines the time-dependent effects on the beams under different loading rates until the delayed failure and compares the results with the previous experimental ones.
机译:通过在混凝土的抗压强度和抗拉强度上应用折减系数,目前的全球设计规范已考虑到持续荷载问题,该问题可能导致混凝土结构过度变形和严重损坏。由于与剪切裂缝开口的增加相对应的剪切传递作用的减少,还可能需要剪切设计中的减小因子。但是,只有少数研究正在研究蠕变对混凝土结构抗剪性能的影响,结果尚无定论。作为先前实验工作的补充,本研究旨在通过非线性有限元(FE)分析来研究加载速率对RC细长梁抗剪承载力的影响。在对角剪切破坏的模拟中,采用了具有固定多向裂纹的空间平均本构模型。本研究分析性地检查了在不同加载速率下梁的时效效应,直到延迟失效,并将结果与​​先前的实验结果进行了比较。

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