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Influence of pinching effect of exterior joints on the seismic behavior of RC frames

机译:外部节点的收缩效应对钢筋混凝土框架抗震性能的影响

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摘要

Nonlinear dynamic analyses are carried out to investigate the influence of the pinching hysteretic response of the exterior RC beam-column joints on the seismic behavior of multistory RC frame structures. The effect of the pinching on the local and global mechanisms of an 8-storey bare frame and an 8-storey pilotis type frame structure is evaluated. Further, an experimental data bank extracted from literature is used to acquire experimental experience of the range of the real levels that have to be considered for the pinching effect on the hysteretic response of the joints. Thus, three different cases for the hysteretic response of the joints are considered: (a) joints with strength and stiffness degradation characteristics but without pinching effect, (b) joints with strength degradation, stiffness degradation and low pinching effect and (c) joints with strength degradation, stiffness degradation and high pinching effect. For the simulation of the beam-column joints a special-purpose rotational spring element that incorporates the examined hysteretic options developed by the authors and implemented in a well-known nonlinear dynamic analysis program is employed for the analysis of the structural systems. The results of this study indicate that the effect of pinching on the local and global responses of the examined cases is not really significant at early stages of the seismic loading and especially in the cases when strength degradation in the core of exterior joint has occurred. Nevertheless in the cases when strength degradation does not occur in the joints the pinching may increase the demands for ductility and become critical for the columns at the base floor of the frame structures. Finally, as it was expected the ability for energy absorption was reduced due to pinching effect.
机译:进行了非线性动力分析,以研究外部钢筋混凝土梁柱节点的收缩滞后响应对多层钢筋混凝土框架结构抗震性能的影响。评估了捏对8层裸框架和8层中枢轴类型框架结构的局部和全局机制的影响。此外,从文献中提取的实验数据库用于获取实际水平范围的实验经验,这些水平必须考虑对关节滞后响应的挤压效应。因此,考虑了三种不同的接头滞后响应情况:(a)具有强度和刚度降低特性但没有挤压效应的接头,(b)具有强度降低,刚度降低且挤压效应低的接头,以及强度下降,刚度下降和高夹紧效果。为了模拟梁柱节点,采用了一种特殊用途的旋转弹簧元件,该元件结合了作者开发的已检验的磁滞选项,并以众所周知的非线性动力学分析程序实现,用于结构系统分析。这项研究的结果表明,在地震荷载的早期阶段,特别是在外部接头核心发生强度退化的情况下,捏合对所检查情况的局部和整体响应的影响并不明显。然而,在接缝处不会发生强度下降的情况下,捏合可能会增加对延性的要求,并且对于框架结构底层的柱子而言至关重要。最后,正如预期的那样,由于收缩效应,能量吸收的能力降低了。

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