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再生混凝土框架顶层角节点的抗震性能试验研究
引用本文:王晓菡,柳炳康,田雨,秦一如.再生混凝土框架顶层角节点的抗震性能试验研究[J].地震工程与工程振动,2012,32(4):118-124.
作者姓名:王晓菡  柳炳康  田雨  秦一如
作者单位:1. 合肥工业大学土木与水利工程学院,安徽合肥230009;江南大学环境与土木工程学院,江苏无锡214122
2. 合肥工业大学土木与水利工程学院,安徽合肥,230009
3. 无锡市建筑设计研究院有限责任公司,江苏无锡,214001
基金项目:安徽省自然科学基金项目,江南大学环境与土木工程学院院长基金项目
摘    要:通过对3榀再生混凝土框架顶层角节点(再生粗骨料掺量为100%)在低周反复荷载作用下的抗震性能试验,对试件的破坏形态、延性、耗能能力等进行了分析。研究表明,再生混凝土框架顶层角节点试件在低周反复荷载作用下经历初裂、通裂、极限、破坏4个阶段,最终呈节点核心区剪切破坏。位移延性系数在3.27~3.95之间,具有良好的抗震性能,可用于有抗震设防要求的框架。采用ANSYS软件建立了节点的有限元计算模型,进行了单调荷载下的有限元非线性分析,得到了骨架曲线和试件的应力分布形态,有限元计算结果与试验结果吻合较好。采用《混凝土结构设计规范》规定的公式对角节点抗剪强度进行了计算并与试验数据相比较,发现计算值偏于不安全。

关 键 词:再生混凝土  框架顶层角节点  抗震性能  延性

Experimental study on seismic behavior of knee-joints in recycled concrete frame
WANG Xiaohan , LIU Bingkang , TIAN Yu , QIN Yiru.Experimental study on seismic behavior of knee-joints in recycled concrete frame[J].Earthquake Engineering and Engineering Vibration,2012,32(4):118-124.
Authors:WANG Xiaohan  LIU Bingkang  TIAN Yu  QIN Yiru
Institution:1.College of Civil Engineering,Hefei University of Technology,Hefei 230009,China;2.College of Environmental and Civil Engineering, Jiangnan University,Wuxi 214122,China;3.Wuxi Architectural Design & Research Institute Co.,Ltd,Wuxi 214001,China)
Abstract:A study is conducted on the seismic behavior of three recycled concrete knee-joints with 100% recycled coarse aggregate under low frequency reversed load.The seismic behavior of recycled concrete members such as failure features,ductility,stress of steels in the specimens and energy dissipation under reversed loads is investigated.The test and analyses show that the recycled concrete member can be applied in structures because of its good seismic behavior.These specimens are modeled with ANSYS software.The calculated skeleton curves and the stress distribution of the specimen are corresponding well with the test results.It is found that the calculated shear capacity from formula provided in the code is significantly greater than test results.
Keywords:recycled aggregate concrete  knee-joint in frame  seismic behavior  ductility
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