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Performance of reinforced concrete columns under bi-axial lateral force/displacement and axial load

机译:钢筋混凝土柱在双向轴向力/位移和轴向荷载作用下的性能

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Accurate and realistic assessment of the performance of columns in general and those in critical locations that may cause progressive failure of the entire structure, in particular, is significantly important. This performance is affected by the load history, pattern and intensity. Current design code does not consider the effect of load pattern on the load and displacement capacity of columns. In the study reported here, monotonic material models, cyclic rule, and plastic hinge models have been utilized in a fiber-based analytical procedure, validated against experimental data. Comparison of the analytical predictions and experimental data, through moment-curvature and force-deflection analyses, confirmed the accuracy and validity of the analytical algorithm and models. The analytical model was then used in a parametric study considering the effects of axial load variation and lateral force/displacement paths on the flexural strength and energy dissipation capacity of reinforced concrete columns. Published by Elsevier Ltd.
机译:准确而现实地评估总体上以及可能会导致整个结构逐渐失效的关键位置的性能非常重要。该性能受载荷历史,模式和强度的影响。当前的设计规范没有考虑载荷模式对柱的载荷和位移能力的影响。在这里报告的研究中,单调材料模型,循环规则和塑料铰链模型已用于基于纤维的分析程序中,并已针对实验数据进行了验证。通过弯矩曲率和力-挠度分析比较分析预测和实验数据,证实了分析算法和模型的准确性和有效性。然后将分析模型用于参数研究中,考虑轴向载荷变化和侧向力/位移路径对钢筋混凝土柱的抗弯强度和能量耗散能力的影响。由Elsevier Ltd.发布

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