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Basic Principal and Design Methodology of Progressive Storey Collapse Resistance in a New Type RC Twin-frame Structure

机译:新型RC双框架结构渐层抗倒塌的基本原理和设计方法

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According to earthquake hazard, normal frame structures could hardly avoid failure of 'Strong Beam and Weak Column', weak layer and even progressive storey collapse under strong earthquakes, a main reason is the lack of second seismic fortification line in frame structure. Based on the design thought of multiple seismic fortification lines, reinforced concrete twin-frame structure is initiated in this paper. Major feature is increases of redundant constraints and load paths due to added outer limbcolumns could take effect as the second seismic fortification line. Twin-frame structure could not only fulfill the demand of 'three levels, two stages' in seismic code, but also have been designed through the third stage of 'resist progressive collapse', using key member method to promote safety storage and deformability of outer limb-columns, using removal key member method to verify vertical ultimate load of frame beams in weak layer. Though twin-frame structure could not completely avoid plastic hinges in column ends, progressive storey collapse will not appear in this kind of structure. Twin-frame structure is a new structure system which could be applied in constituting new projects as well as strengthening and rebuilding existing projects, further research can be done on this structure system.
机译:根据地震危害,正常框架结构很难避免“强梁和弱柱”,薄弱层甚至逐渐叠层坍塌在强烈地震下,主要原因是框架结构中缺乏第二次地震防御性线。基于多种地震强化线的设计思想,本文启动了钢筋混凝土双框架结构。主要特征是冗余约束的增加,并且由于附加的外延柱而导致的负载路径可以生效,作为第二地震强化线。双框架结构不仅可以满足“三级,两个阶段”在地震代码中的需求,而且还通过第三阶段的第三阶段'抗蚀性崩溃',采用关键成员方法促进外部的安全储存和可变形性肢体列,使用删除密钥构件方法来验证弱层中帧束的垂直极性负载。虽然双框架结构无法完全避免柱子末端的塑料铰链,但在这种结构中不会出现渐进的楼层塌陷。双框架结构是一种新的结构系统,可以应用于构成新项目以及加强和重建现有项目,可以在这种结构系统上进行进一步的研究。

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