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Bearing strength of steel coupling beam connections embedded reinforced concrete shear walls

机译:嵌入式钢筋混凝土剪力墙钢耦合梁连接的承载力。

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摘要

In high multistory reinforced concrete buildings, coupled shear walls can provide an efficient structural system to resist horizontal force due to wind and seismic effects. Coupled shear walls are usually built over the whole height of the building and are laid out either as a series of walls coupled by beams and/or slabs or as a central core structure with openings to accommodate doors, elevator wells, windows and corridors. A number of recent studies have focused on examining the seismic response of concrete, steel, and composite coupling beams. However, since no specific equations are available for computing the bearing strength of steel coupling beam-wall connections, it is necessary to develop such strength equations. There were carried out analytical and experimental studies to develop the strength equations of steel coupling beams-concrete wall connections. Experiments were conducted to determine the factors influencing the bearing strength and to verify the strength equations of the steel coupling beam-wall connections. The proposed equations were in good agreement with both test results and other test data from the literature.
机译:在高层多层钢筋混凝土建筑中,耦合的剪力墙可以提供有效的结构系统,以抵抗由于风和地震作用而产生的水平力。耦合剪力墙通常建在建筑物的整个高度上,或者布置成一系列由梁和/或平板耦合的墙,或者布置成带有开口的中央核心结构,以容纳门,电梯井,窗户和走廊。最近的许多研究集中在检查混凝土,钢和复合耦合梁的地震响应。但是,由于没有特定的方程式可用于计算钢耦合梁壁连接的承载强度,因此有必要开发此类强度方程式。进行了分析和实验研究,以开发钢耦合梁-混凝土墙连接的强度方程。进行实验以确定影响轴承强度的因素,并验证钢耦合梁-壁连接的强度方程。所提出的方程与测试结果和文献中的其他测试数据都非常吻合。

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