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Experimental investigation of reinforced SCC beam-column joint with rectangular spiral reinforcement under cyclic loading

机译:循环荷载作用下矩形螺旋增强SCC梁柱节点的试验研究

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This paper presents an experimental study on continuous rectangular spiral reinforced self-compacting concrete (SCC) beam-column subassemblies subjected to cyclic loading. Total three sets of exterior beam-column joint for different flexural strength ratio, with continuous rectangular spiral reinforcement and individual closed stirrups as reference specimen, are considered in the investigation and the flexural strength ratio adopted for three-set were 1.3, 1.5, 2.0. In this work, self-compacting concrete specimens with three different inclinations of stirrups angles (75 degrees, 80 degrees, 85 degrees) are considered for the spiral reinforcement. For better understanding and analysis, all the (twelve) specimens are shrinked to one-third scale. The reinforced beam column sub assemblage has been subjected to cyclic tests to understand its crack propagation and resistive capacity during the seismic excitations. The primary objective of this study is focused on the seismic behaviour of the joint, in terms of load displacement pattern, hysteresis behaviour, failure pattern and energy dissipation. Further more studies are carried out to distinguish and analyse the performances with conventionally closed stirrups. The observed findings are motivating as continuous spiral stirrups outperformed the conventional stirrups in terms of ultimate strength, stiffness degradation, ductility factor and cumulative energy dissipation. These findings would be beneficial to the engineers to build, feasible, suitable and efficient upgrading technique for structural joints in seismic zones. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本文提出了承受循环荷载作用的连续矩形螺旋增强自密实混凝土(SCC)梁柱组件的实验研究。在研究中考虑了三组不同抗弯强度比的外梁柱节点,以连续矩形螺旋钢筋和单独的封闭箍筋为参考样本,三组采用的抗弯强度比为1.3、1.5、2.0。在这项工作中,考虑将具有三种不同of角(75度,80度,85度)倾斜的自密实混凝土试样用于螺旋加固。为了更好地理解和分析,将所有(十二个)样本缩小到三分之一比例。加固梁柱子组合件已经过循环测试,以了解其在地震激​​励过程中的裂纹扩展和抗力。这项研究的主要目标集中在关节的抗震性能方面,包括载荷位移模式,磁滞行为,破坏模式和能量耗散。进行了更多的研究以区分和分析常规封闭式箍筋的性能。观察到的发现对连续螺旋箍筋在极限强度,刚度降低,延性系数和累积能量耗散方面优于常规箍筋具有启发性。这些发现将有利于工程师为地震带构造缝建立一种可行,合适,有效的升级技术。 (C)2018 Elsevier Ltd.保留所有权利。

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