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作 者:袁晓静 刘凡 赵伟[2] 黄海兵 郝皓 YUAN Xiaojing;LIU Fan;ZHAO Wei;HUANG Haibing;HAO Hao(Key Laboratory of Structural Engineering of Jiangsu Province,Suzhou University of Science and Technology,Suzhou 215011,China;Bridge and Tunnel Engineering Research Institute,Zhejiang Institute of Communications,Hangzhou 311112,China)
机构地区:[1]苏州科技大学江苏省结构工程重点实验室,苏州215011 [2]浙江交通职业技术学院桥隧工程研究所,杭州311112
出 处:《建筑结构》2022年第3期124-129,共6页Building Structure
基 金:江苏省建设系统科技项目(2020ZD08);浙江省交通运输厅科技项目(2018042)。
摘 要:为研究连续曲线双箱钢-混组合梁的弯扭性能,以实际工程为背景,以曲线半径和横隔板连接方式为参数,设计了3根1∶10的缩尺模型,并对其进行静力加载试验,研究试验梁跨中截面的荷载-挠度曲线、横向挠度分布和钢梁与混凝土板间的相对滑移规律。结果表明,3根梁的破坏形式一致,均为弯扭破坏,负弯矩区在0.1P;(P;为极限荷载)时就会开裂;极限荷载时,试验梁跨中截面外侧挠度达内侧的1.37倍;试验梁的抗弯刚度和抗扭刚度均随着曲线半径的增大而提高,横隔板连接方式对其弯扭性能影响不大;混凝土板与钢梁结合面切向滑移随着曲线半径的增大而减小,横向栓接试验梁的滑移量小于横向焊接试验梁的;切向滑移量最大值出现在跨度的3/4处,径向滑移量最大值出现在中支点附近处。In order to study the bending and torsion performance of continuous curved double-box steel-concrete composite beams, taking the actual engineering as the background and taking curve radius and connection method of transverse diaphragm as parameters, three scaled 1∶10 models were designed and static loading tests were carried out. The load-deflection curve and lateral deflection distribution of the mid-span section of the test beam and the law of relative slip between the steel beam and the concrete slab were studied. The results show that the failure modes of the three beams are the same, all of which are bending and torsion failures and the negative bending moment zone will crack at 0.1P;(P;is the ultimate load). Under ultimate load, the outer deflection of the mid-span section of the test beam is 1.37 times that of the inner side. The bending stiffness and torsion stiffness of the test beam both increase with the increase of the curve radius. The connection method of transverse diaphragm has little influence on the bending and torsion performance. The tangential slip of the interface between concrete slab and steel beam decreases with the increase of the curve radius. The slip of the lateral bolted test beam is smaller than the lateral welded test beam. The maximum tangential slip appears at 3/4 of the span and the maximum radial slip appears near the middle fulcrum.
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