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Deformation capacity of non-conforming r.c. columns under compressive axial load and biaxial bending

机译:不合格r.c.的变形能力受压轴向载荷和双轴弯曲的圆柱

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In a performance based approach, the knowledge of ultimate capacity of reinforced concrete (r.c.) columns subjected to simultaneous compressive axial load and biaxial bending becomes essential to correctly assess the seismic capacity of existing structures. In the present work, the reduction of ultimate deformation (i.e. rotational) capacity of r.c. members due to the two components of bending moment is analysed by using a specific simplified numerical model. The influence of axial load, geometry, amount of longitudinal reinforcement and mechanical properties on the ultimate chord rotation of r.c. columns is investigated on a dataset of 780 numerical tests on non-conforming columns with plain bars governed by flexural mode. Then, a practice-oriented formulation for the ultimate rotation domain, based on the Load Contour method extended to the chord rotations, is proposed and discussed. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在基于性能的方法中,了解钢筋混凝土(r.c.)柱承受同时压缩轴向载荷和双轴弯曲的极限承载力对于正确评估现有结构的抗震能力至关重要。在目前的工作中,减小了r.c.的最终变形(即旋转)能力。通过使用特定的简化数值模型来分析由弯矩的两个分量引起的构件。轴向载荷,几何形状,纵向钢筋数量和机械性能对RC最终弦旋转的影响。在780个数值试验的数据集上研究了非连续柱,其中不合格柱具有受弯曲模式控制的普通钢筋。然后,提出并讨论了基于扩展到弦旋转的载荷轮廓法的极限旋转域的实践公式。 (C)2016 Elsevier Ltd.保留所有权利。

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