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Investigation of precast RC beam-column assemblies under column-loss scenario

机译:柱损情况下的预制RC梁柱组合件研究

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The progressive collapse of reinforced concrete (RC) buildings, being one of the most critical failure scenarios, is a great concern for the structural engineering community. As precast concrete buildings are deficient in structural continuity, these are more vulnerable to progressive collapse than cast-in-situ RC buildings. The goal of this study is to develop a nonlinear finite element (FE) model using LS-DYNA software to predict the performance of precast non-prestressed RC beam-column assemblies, each comprising three columns and two beams, under column-removal scenario. The model takes into account the nonlinear behavior of concrete and steel, strain rate effect on material properties and contact between surfaces at the joints. The FE models were calibrated against three half-scale specimens tested under middle column-removal scenario. Tests included two precast specimens and one monolithic specimen with continuous top and bottom beam reinforcement. The validated FE modeling was further extended to study the progressive collapse potential of seven revised precast connections. As a result of the FE study, new joint efficiency parameters were introduced in this research. (C) 2017 Elsevier Ltd. All rights reserved.
机译:钢筋混凝土(RC)建筑物的逐渐倒塌是最关键的破坏场景之一,是结构工程界非常关注的问题。由于预制混凝土建筑物的结构连续性不足,因此它们比现浇的RC建筑物更容易发生逐渐倒塌。这项研究的目的是使用LS-DYNA软件开发非线性有限元(FE)模型,以预测在拆除柱子的情况下预制非预应力RC梁柱组合件的性能,每个组合件包括三根柱子和两根梁。该模型考虑了混凝土和钢的非线性行为,应变率对材料性能的影响以及接缝处表面之间的接触。有限元模型针对在中柱拆除情况下测试的三个半比例标本进行了校准。测试包括两个预制样品和一个带有连续顶部和底部梁增强件的整体式样品。经过验证的有限元模型进一步扩展为研究七个修订的预制连接的渐进式倒塌潜力。有限元研究的结果是,在这项研究中引入了新的联合效率参数。 (C)2017 Elsevier Ltd.保留所有权利。

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