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Tests and Simple Models of RC Frame Subassemblies for Postulated Loss of Column

机译:假定柱损失的RC框架组件的测试和简单模型

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The impact of the loss of an intermediate column on the most adversely affected subassembly of a multistory, multibay reinforced concrete (RC) frame was studied experimentally and analytically. Two subassemblies were considered: a monolithic one and another consisting of dry-jointed precast beams and columns, held together with the help of concentric unbonded prestressing of the beams. A uniformly distributed load was applied along the beams to realistically simulate the loading in a building with about the same geometry and loads in all floors above the failed column. The load-deflection response can be followed with a simple hand-calculation model, which takes into account the primary geometric and material nonlinearities, including arch action in the web of the beam and catenary action in the rebars and unbonded tendons. The model quantifies the difference between single-point loading of the beam, as is normally the case in other experimental campaigns, and distributed loading, as well as the contributions of the various resistance mechanisms and sensitivity to parameters. An interesting experimental finding is that a beameven a monolithic onedoes not behave as a well-integrated system of steel and concrete when it loses a column: the longitudinal reinforcement transfers the catenary tension to the beams of the adjacent bays, pulling the columns together, whereas compression from the arch action is transferred to the columns, pushing them apart. The test results are combined with those of one-way continuous slabs for simulated loss of support to an exterior beam to quantify the margins when support to a column is lost.
机译:通过实验和分析研究了中间柱损失对多层,多海湾钢筋混凝土(RC)框架受最不利影响的组件的影响。考虑了两个子组件:一个整体,另一个由干连接的预制梁和柱组成,并借助梁的同心非粘结预应力固定在一起。沿梁施加均匀分布的载荷,以逼真的模拟具有相同几何形状的建筑物中的载荷,并模拟失效柱上方所有楼层的载荷。可以通过简单的手工计算模型来跟踪载荷-挠度响应,该模型考虑了主要的几何和材料非线性,包括梁腹板中的拱形作用以及钢筋和未粘结筋中的悬链线作用。该模型将量化梁的单点载荷(在其他实验活动中通常如此)与分布式载荷之间的差异,以及各种阻力机制和对参数的敏感性的影响。一个有趣的实验发现是,即使是整体式的梁,当失去一根柱子时,也不会表现为钢和混凝土的良好集成系统:纵向钢筋将悬链线张力转移到相邻隔间的梁上,将柱子拉到一起,而足弓动作产生的压缩传递到立柱,将其分开。将测试结果与单向连续平板的结果组合起来,以模拟对外部梁的支撑损失,以量化失去对柱的支撑时的边距。

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