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对广义梁理论中的平面和空间薄壁构件的整体屈曲分析 被引量:1
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作者 C. Basaglia D. Camotim n. silvestre 《钢结构》 2008年第7期77-77,共1页
采用广义梁理论(GBT)对平面和空间薄壁构件进行整体屈曲分析。简要概述主要概念和广义梁理论屈曲分析中所采用的程序。基于广义梁理论的梁有限元分析考虑了4种刚体变形模式,即:i)运动学模型,用于模拟连接2个或更多U型和I型构件节点的翘... 采用广义梁理论(GBT)对平面和空间薄壁构件进行整体屈曲分析。简要概述主要概念和广义梁理论屈曲分析中所采用的程序。基于广义梁理论的梁有限元分析考虑了4种刚体变形模式,即:i)运动学模型,用于模拟连接2个或更多U型和I型构件节点的翘曲传输作用;ii)采用程序处理构件重心和剪力中心轴(横截面非双向对称)不重合的效应;iii)节点构件的定义,这些节点可提供连接构件的自由度和节点广义位移之间的联系。最后,介绍并讨论数值结果,其可能有助于基于广义梁理论的有限元公式的制定和实施。并将基于GBT分析的结果(临界屈曲载荷和模态)与ANSYS程序中壳单元和梁单元的建模分析结果进行了对比验证。 展开更多
关键词 平面薄壁结构 空间薄壁结构 广义梁理论 (GBT) 基于GBT的梁有限元 结构整体屈曲性能 节点翘曲传递
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Seismic performance of composite moment-resisting frames achieved with sustainable CFST members 被引量:6
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作者 A. SILVA Y. JIAnG +3 位作者 L. MACEDO J. M. CASTRO R. MOnTEIRO n. silvestre 《Frontiers of Structural and Civil Engineering》 SCIE EI CSCD 2016年第3期312-332,共21页
The main objective of the research presented in this paper is to study the bending behaviour of Concrete Filled Steel Tube (CFST) columns made with Rubberized Concrete (RuC), and to assess the seismic performance ... The main objective of the research presented in this paper is to study the bending behaviour of Concrete Filled Steel Tube (CFST) columns made with Rubberized Concrete (RuC), and to assess the seismic performance of moment-resisting frames with these structural members. The paper describes an experimental campaign where a total of 36 specimens were tested, resorting to a novel testing setup, aimed at reducing both the preparation time and cost of the test specimens. Different geometrical and material parameters were considered, namely cross-section type, cross-section slenderness, aggregate replacement ratio, axial load level and lateral loading type. The members were tested under both monotonic and cyclic lateral loading, with different levels of applied axial loading. The test results show that the bending behaviour of CFST elements is highly dependent on the steel tube properties and that the type of infill does not have a significant influence on the flexural behaviour of the member. It is also found that Eurocode 4 is conservative in predicting the flexural capacity of the tested specimens. Additionally, it was found that the seismic design of composite moment- resisting frames with CFST columns, according to Eurocode 8, not only leads to lighter design solutions but also to enhanced seismic performance in comparison to steel frames. 展开更多
关键词 concrete filled steel tubes rubberized concrete composite frames seismic performance assessment
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