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Experimental Study on Collapse-Resistant Behavior of RC Beam-Column Sub-structure considering Catenary Action

机译:考虑悬链作用的RC梁柱子结构抗倒塌性能试验研究

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Under blast or impact loads, disproportionate collapse will be likely to occur for a majority of high-rise building without special collapse-resistant design. This paper presents a collapse-resistant experimental method and test results of five RC beam-column sub-structures with various arrangements of steel bars and various loading velocity. Both ends of the specimens were pin-connected and fixed on steel boxes and two steel tubes were embedded in both ends of the specimen. The load was continuously applied on the top of the middle column in scheduled time by the servo-hydraulic actuator with displacement-controlled mode, and the pin-supported RC beam-column experienced elastic, plastic and catenary stages. The collapse occurred at a vertical displacement of about 400mm due to the
机译:在爆炸或冲击载荷下,如果没有特殊的抗倒塌设计,大多数高层建筑很可能会发生不成比例的倒塌。本文提出了五种不同钢筋布置和加载速度的钢筋混凝土梁柱子结构的抗倒塌试验方法和试验结果。将样品的两端销钉连接并固定在钢箱上,并在样品的两端嵌入两个钢管。负载通过排量控制模式的伺服液压执行机构按计划的时间连续施加在中柱顶部,并且销支撑的RC梁柱经历了弹性,塑性和悬链线阶段。倒塌发生在约400mm的垂直位移,这是由于

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