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作 者:郝际平[1] 于金光[1] 王先铁[1] 郭宏超[1] 虎奇[1]
机构地区:[1]西安建筑科技大学土木工程学院,陕西西安710055
出 处:《西安建筑科技大学学报(自然科学版)》2012年第2期153-158,共6页Journal of Xi'an University of Architecture & Technology(Natural Science Edition)
基 金:国家自然科学基金资助项目(51178381);国家自然科学青年基金资助项目(51108369);博士学科点专项科研基金(20096120110004);教育部博士点新教师基金(20116120120008);陕西省教育厅自然科学研究项目(11JK0942)
摘 要:为了研究半刚性节点钢框架-加劲钢板剪力墙结构体系的抗震性能和传力机理,模拟实际框剪结构的底部两层,对一榀单跨两层1/3缩尺半刚性节点钢框架-十字加劲钢板剪力墙结构进行了抗震拟静力试验研究,在试验模型的基础上,建立了非线性有限元模型,并验证了模型的有效性.考虑影响结构抗震性能的4个主要因素:节点刚度、剪力墙厚度、框架柱的刚度、肋板刚度比,进行了4个系列16个有限元模型的变参数分析.结果表明:降低节点刚度有利于提高结构的延性和耗能能力;增加柱的刚度和肋板厚度可提高结构的初始刚度、承载力和延性性能;增加内填墙板的厚度,将降低试件的延性性能;内填墙板在加载初期非常有效,承担70%~85%的水平剪力,研究为该种结构体系的工程应用和理论分析提供依据.In order to study the seismic behavior and force distribution in the structural system of the semi-rigid composite steel frame with steel plate shear wails, based on the experiment of a one-third scale, one-bay, two-story semi-rigid com- posite steel frame model with cross-stiffened steel plate shear wall under lateral cyclic loads, a non-linear finite element a- nalysis model was built,and then the finite-element analysis model was validated by experimental data. Parametric analy- ses of 4 series and 16 finite element models were performed, in which 4 main influential factors including rotational stiff- ness of connections, different infill wall slenderness ratios, column flexibility, rigidity of stiffener were considered. The results showed that the reduction rotational stiffness of the connections may enhance the width of infill walls. Use of suit- able parametric of column flexibility, rigidity of stiffener would improve the performance of the whole structure. The infill plates are the structure with the infill plates are very effective in the initial stages of loading. The infill plates undertakes 70 %-85 % of overall lateral load. The research provides a basis for engineering application and theoretical analysis of the structural system.
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