首页> 外文期刊>Engineering Structures >Experiment investigation of the influence of reinforcing bar buckling on seismic behavior of RC columns
【24h】

Experiment investigation of the influence of reinforcing bar buckling on seismic behavior of RC columns

机译:钢筋屈曲对RC柱地震行为影响的实验研究

获取原文
获取原文并翻译 | 示例

摘要

The inelastic buckling of longitudinal steel bar is one of the major damage states of reinforced concrete (RC) column under seismic loading, which may result in a reduction of section moment capacity and ductility. However, the relationship between bar buckling and deterioration in seismic behaviors of RC column has normally been proposed based on the theoretical analysis, direct experimental verification is scarce, and the differences between the buckling behavior of individual steel bar and that of longitudinal bar in RC column remain unclear. In this paper, a series of experiments on cantilever RC columns and individual bars were con-ducted to study the buckling behavior by means of the measured lateral buckling displacements of the bars. A new method was proposed to measure two components of the lateral buckling displacements of longitudinal bars and individual bars in orthogonal directions, the reliability and accuracy of the proposed method have been identified by the comparison of measured buckling displacement of corner bars in two identical RC specimens. Based on the measured lateral buckling displacements of reinforcing bar in RC columns and corresponding individual bar, the onset of buckling and the buckling direction of the two kinds of steel bars were analyzed. It is found that buckled main bars in RC columns behave differently with individual steel bars due to the constraint effect of cover concrete. The equivalent average stress of main bar was determined by creating a mapping between the buckling displacement of bar in RC section and the average stress of individual bar. On the basis of the buckling displacements and the equivalent average stress, the effects of bar buckling on the post-peak bearing capacity and the displacement ductility of RC column were investigated. The results show that the degradation of the post-peak lateral force of RC column is generally weaker than the strength deterioration of buckled steel bar due to the load redistribution between longitudinal reinforcement and surrounding core concrete.
机译:纵向钢条的绝缘弹性屈曲是地震载荷下钢筋混凝土(RC)柱的主要损伤状态之一,这可能导致部分矩能力和延展性降低。然而,通常基于理论分析,直接实验验证是基于理论分析,直接实验验证是稀缺的,直接实验验证以及rc柱中纵向杆的屈曲行为与纵向棒的屈曲行为之间的差异以及RC柱中屈曲行为之间的差异仍然不清楚。在本文中,将一系列关于悬臂RC柱和单个条的实验进行了控制,以通过测量的杆的横向屈曲位移来研究屈曲行为。提出了一种新方法来测量纵向方向上纵向杆和单个杆的横向屈曲位移的两个部件,所提出的方法的可靠性和准确性通过在两个相同的RC样本中的折叠位移的比较来识别了所提出的方法。基于RC柱中加强杆的测量横向屈曲位移和相应的单个杆,分析了两种钢筋的弯曲和屈曲方向的开始。结果发现,由于盖子混凝土的约束效果,RC色谱柱中的弯曲主杆与单独的钢筋不同。通过在RC部分中的条形条的屈曲位移和单个杆的平均应力之间产生旋曲位移来确定主杆的等效平均应力。在屈曲位移和等效平均应力的基础上,研究了杆屈曲对峰值轴承能力和RC柱的位移延性的影响。结果表明,由于纵向加强件和周围芯混凝土之间的负载再分布,RC柱的峰值横向力的劣化通常比弯曲钢筋的强度劣化较弱。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号