首页> 外文期刊>Bulletin of earthquake engineering >Numerical study on seismic behavior of precast bridge columns with large-diameter bars and UHPC grout considering the bar-slip effect
【24h】

Numerical study on seismic behavior of precast bridge columns with large-diameter bars and UHPC grout considering the bar-slip effect

机译:大直径杆和UHPC灌浆考虑杆滑动效果的预制桥柱抗震性能的数值研究

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

A novel connection adopting lap-spliced large-diameter bars and ultra-high performance concrete (UHPC) grout was developed to accelerate the assemble progress of precast bridge columns. The precast bridge column adopting the connections was testified to be on a par with the monolithic concrete counterpart in terms of seismic performance in previous research. This paper aims to develop a numerical model to further investigate the seismic behavior of the proposed bridge column considering the bar-slip effect. A finite element model was established for the bridge columns considering deformation components of flexure, shear, and bar-slip. The bond behavior between the deformed bar and UHPC was defined using a new practical model, which was developed based on a pullout test including five specimens in this research. The established finite element model was verified by the cyclic loading test in literature in terms of the overall hysteretic curve and local responses. The validated model was used to conduct parametric analysis to study the contributions of the different deformation components to lateral deformation as well as the effects of large-diameter bars on seismic performance. Results show that all the pullout specimens have the tensile fracture of bars, which indicates that the development length of 5 times bar diameter is sufficient for deformed bars in UHPC when the bar diameter is no more than 32 mm. The practical model is effective to consider the effects of the slip between the deformed bar and UHPC. The finite element model can predict the overall hysteretic curve and local responses at different drift ratios. The bar-slip has a considerable even dominative contribution to the lateral deformation of the proposed bridge column. Larger bar diameter can enhance deformation capacity as well as reduce energy dissipation and residual drift ratio.
机译:开发了一种采用LAP拼接大直径棒和超高性能混凝土(UHPC)灌浆的新型连接,以加速预制桥柱的组装进展。采用连接的预制桥柱被证明是在先前研究中的地震性能方面的单片混凝土对应的标准。本文旨在开发一个数字模型,以进一步研究所提出的桥柱的地震行为,考虑到杆滑移效果。考虑弯曲,剪切和杆状滑动变形部件的桥柱建立了有限元模型。使用新的实际模型定义了变形棒和UHPC之间的粘合行为,该实用模型是基于在该研究中包括五个标本的拉出试验而开发的。在整体滞后曲线和局部反应方面,通过文献中的循环加载试验验证了已建立的有限元模型。经过验证的模型用于进行参数分析,以研究不同变形组件对横向变形的贡献以及大直径杆对地震性能的影响。结果表明,所有拉出样本都具有棒的拉伸骨折,表明当条形直径不超过32mm时,杆直径的5倍直径的开发长度足以在UHPC中变形的条。实际模型有效地考虑在变形棒和UHPC之间的滑动的影响。有限元模型可以预测不同漂移比的整体滞后曲线和局部反应。杆状滑移对所提出的桥柱的横向变形具有相当大的贡献。较大的杆直径可以增强变形容量,并降低能量耗散和残余漂移比。

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