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Modeling of non-seismically detailed columns subjected to reversed cyclic loadings

机译:承受反向循环荷载的非地震详细列的建模

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摘要

A strut-and-tie moel is introduced in this paper to predict the ultimate shear strength of non-seismically detailed columns. The validity and applicability of the proposed strut-and-tie model are evaluated by comparison with available experimental data. The model was developed based on visible crack patterns observed on the test specimens. The concrete contribution is integrated into the strut-and-tie model through a concept of equivalent transverse reinforcement. To further validate the model a full-scale non-seismically detailed reinforced concrete column was tested to investigate its seismic behavior. The specimen was tested under the combination of a constant axial load, 0.30f_c'A_g and quasi-static cyclic loadings simulating earthquake actions. Quasi-static cyclic loadings simulating earthquake actions were applied to the specimen until it could not sustain the applied axial load. The analytical results reveal that the strut-and-tie method is capable of modeling to a satisfactory accuracy the ultimate shear strength of non-seismically detailed columns subjected to reserved cyclic loadings.
机译:本文介绍了拉杆式扎带式模型,以预测非地震详细列的极限抗剪强度。通过与可用的实验数据进行比较,评估了所提出的拉杆-拉杆模型的有效性和适用性。该模型是基于在试样上观察到的可见裂纹模式开发的。通过等效的横向钢筋的概念将混凝土的贡献整合到支撑-拉杆模型中。为了进一步验证该模型,对全尺寸非地震详细钢筋混凝土柱进行了测试,以研究其抗震性能。在恒定轴向载荷0.30f_c'A_g和模拟地震作用的准静态循环载荷的组合下测试了试样。将模拟地震作用的准静态循环载荷施加到试件上,直到不能承受施加的轴向载荷为止。分析结果表明,拉杆-拉杆法能够以令人满意的精度对承受预定循环荷载的非地震详细列的极限抗剪强度进行建模。

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