文章摘要
闫长旺,吕海锋,贾金青,张菊,刘曙光.基于软化拉-压杆模型钢骨超高强混凝土框架节点抗剪承载力计算[J].,2015,55(1):54-59
基于软化拉-压杆模型钢骨超高强混凝土框架节点抗剪承载力计算
Shear strength calculation of steel reinforced ultra-high strength concrete frame connection based on softened strut-and-tie model
  
DOI:10.7511/dllgxb201501008
中文关键词: 钢骨超高强混凝土  框架节点  软化拉-压杆模型  抗剪承载力  轴压比  体积配箍率
英文关键词: steel reinforced ultra-high strength concrete  frame connection  softened strut-and-tie model  shear strength  axial compression ratio  volumetric stirrup ratio
基金项目:国家自然科学基金资助项目(5116803451178078);内蒙古自然科学基金资助项目(2011BS0709);内蒙古自治区高等学校青年科技英才支持计划资助项目(NJYT-14-B08);大连理工大学海岸和近海工程国家重点实验室开放基金资助项目(LP1015).
作者单位
闫长旺,吕海锋,贾金青,张菊,刘曙光  
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中文摘要:
      钢骨超高强混凝土框架节点是一种新型组合结构.为计算钢骨超高强混凝土框架节点的抗剪承载力,基于钢筋混凝土框架节点软化拉-压杆模型,以钢骨和超高强混凝土为压杆,以钢骨、纵筋、箍筋为拉杆,建立了钢骨超高强混凝土框架节点软化拉-压杆模型,进行了框架节点抗剪承载力计算,并与试验值进行了比较,分析了轴压比和配箍率对计算值的影响.结果表明,抗剪承载力试验值与计算值的比在1.2左右,吻合较好,且计算值偏于安全;随着轴压比的增大,计算值增大;随着配箍率的增大,计算值亦增大.所提出的钢骨超高强混凝土框架节点软化拉-压杆模型很好地反映出轴压比和配箍率对抗剪承载力的影响.
英文摘要:
      Steel reinforced ultra-high strength concrete frame connection is a new type of composite structure. In order to calculate the shear strength of steel reinforced ultra-high strength concrete frame connection, a softened strut-and-tie model is proposed based on the reinforced concrete frame connection. In this model, steel and ultra-high strength concrete are considered as strut, and steel, longitudinal reinforcement, loop reinforcement are considered as tie. Shear strength of steel reinforced ultra-high strength concrete frame connection is calculated, the calculated values are compared with test values, and influences of axial compression ratio and stirrup ratio on the calculated values of shear strength are analyzed. The experimental results show that the ratios between test values and calculated values are approximately 1.2, and the calculated values agree well with test values and are reliable. The calculated values increase with axial compression ratio increment or with stirrup ratio increment. The proposed softened strut-and-tie model can reflect the influences of axial compression ratio and stirrup ratio on shear strength.
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