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钢框架梁柱弱轴顶底角钢连接刚度的理论分析和试验研究
引用本文:李文岭,郝际平,王连坤,陈红英,张俊峰.钢框架梁柱弱轴顶底角钢连接刚度的理论分析和试验研究[J].建筑结构学报,2008,29(2):125-131.
作者姓名:李文岭  郝际平  王连坤  陈红英  张俊峰
作者单位:西安建筑科技大学,西安建筑科技大学,西安建筑科技大学,西安建筑科技大学,西安建筑科技大学 陕西西安710055,山东建筑大学,山东济南250101,陕西西安710055,陕西西安710055,陕西西安710055,陕西西安710055
摘    要:为研究梁柱弱轴连接的抗弯性能,进行了2类共6个大尺寸弱轴顶底角钢连接试件的单调加载试验,试验试件包括腹板-角钢连接试件和本文根据梁柱弱轴连接受力变形特点设计的T形钢-角钢连接试件。根据经典力学理论,推导了弱轴顶底角钢连接初始刚度的分析计算方法。梁柱弱轴角钢连接的刚度取决于各组件的刚度,角钢、螺栓和与角钢竖向肢连接的板件起决定作用,其中刚度最小的组件其几何尺寸对连接刚度的影响最明显。弱轴顶底角钢连接作为一种典型的半刚性连接,具备良好的变形能力、一定的弯矩承载能力和很好的钢材屈服后塑性强化能力。

关 键 词:初始刚度  顶底角钢连接  理论分析  梁柱弱轴连接  试验  
文章编号:1000-6869(2008)02-0125-07
收稿时间:2008-04-05
修稿时间:2006年11月1日

Experimental and analytical study on stiffness of beam-to-column minor axis top-and-seat angle connection in steel frames
LI Wenling,HAO Jiping,WANG Liankun,CHEN Hongying,ZHANG Junfeng.Experimental and analytical study on stiffness of beam-to-column minor axis top-and-seat angle connection in steel frames[J].Journal of Building Structures,2008,29(2):125-131.
Authors:LI Wenling  HAO Jiping  WANG Liankun  CHEN Hongying  ZHANG Junfeng
Affiliation:LI Wenling,HAO Jiping,WANG Liankun,CHEN Hongying,ZHANG Junfeng (.Xi'an University of Architecture and Technology,Xi'an,China,.Shandong Jianzhu University,Jinan,China)
Abstract:Six large-scale specimens with minor axis top-and-seat angle connections under monotonic loading were tested.One type new connection form was designed according on load-displacement characteristics of minor axis connection.Analytical models of initial stiffness of the connections were developed based on classical theory of mechanics.The stiffness of minor axis angle connections depends on the stiffness of connection components,and component with smaller stiffness has greater affect on overall stiffness of the connection.As one of the typical semi-rigid connection,top-and-seat angle minor axis connection demonstrates good rotation capacity,some moment capacity and excellent plastic strengthening potentiality.
Keywords:beam-to-column minor axis connections  top-and-seat angle connection  theoretical analysis  experimental test  initial stiffness  
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