典型钢框架结构节点的动态力学性能与延性分析
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长江学者和创新团队发展计划教育部创新团队(IRT0619);国家科技支持计划子课题(2006BAJ13B02-01);教育部新世纪优秀人才计划(NCET-11-0123)


Analysis of Dynamic Behaviors and Ductility of Steel Moment Frame Connections
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    摘要:

    采用ABAQUS有限元软件分析了典型钢框架节点(狗骨式节点、端板螺栓连接节点和T型钢连接节点)抗倒塌性能,通过改变冲击荷载大小得到节点的荷载-位移曲线关系,从而得到节点的动态力学性能。分析结果表明,对于不同类型节点,在冲击荷载作用下均未形成悬索机构,且翼缘削弱部分和螺栓连接是梁柱子结构中的薄弱环节。提出了采用节点延性系数评估连续倒塌过程中节点延性的方法,定义不同类型节点结构动力荷载下的极限转动能力θmax 与结构开始形成悬链线效应所达到的转角(θc)比值为节点延性系数。当节点延性系数大于1.0时,表示该节点结构能够形成悬链线效应,进入悬索作用阶段;延性系数越大,结构的安全储备越大。节点延性系数可以用于结构抗连续倒塌设计,评估结构是否考虑悬链线效应,以便对结构进行经济、合理的设计。

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    Three different types of connections (dog-bone connection, bolted end-plate connection and T-stub connection) were analyzed using finite element software-ABAQUS. The dynamic behavior of connections following the column damage during progressive collapse were concluded through the analysis of load-rotation relationship when different impact loads were applied. The results showed that the forming of catenry mechanism failed during the process of progressive collapse when sufferring from impact load. And the reduced flange and bolts were the weakest parts of beam-column connections. Meanwhile, ductility method was suggested assessing the behaivor of connections. Defining the rate of ultimate rotaion capacity under impact load (θmax ) and rotation that began to form catenry (θc) as the ductility of connection. When the rate greater than 1.0, it suggested that the connection had the ability to develop catenry and the higher the rate is, the higher the security reserve capacity of the structure. This method could be used to design structures of anti-collapse economiclly and properly.

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霍静思,胡聪伶,张晋清,郭玉荣,肖岩.典型钢框架结构节点的动态力学性能与延性分析[J].土木与环境工程学报(中英文),2012,34(Z1):149-154. HUO Jingsi, HU Congling, ZHANG Jinqing, GUO Yurong, XIAO Yan. Analysis of Dynamic Behaviors and Ductility of Steel Moment Frame Connections[J]. JOURNAL OF CIVIL AND ENVIRONMENTAL ENGINEERING,2012,34(Z1):149-154.[doi]

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  • 在线发布日期: 2012-09-13
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