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首页> 外文期刊>Journal of Constructional Steel Research >Study on collapse of steel-reinforced concrete structure caused by self-weight during construction
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Study on collapse of steel-reinforced concrete structure caused by self-weight during construction

机译:施工过程中自重引起的钢筋混凝土结构塌陷研究

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If a steel-reinforced concrete (SRC) structure has improper construction procedures, it may collapse due to unpredictable construction loads. This study aims to explore construction safety, taking the SRC structure collapse incident of a new factory under construction in Taiwan as an example. Through a second-order analysis, the findings of the study show that the cause of the collapse incident might be that, in the process of construction, the designers failed to consider the overall self-weight of the steel frame, which had exceeded the critical load of the structure at that time. This oversight may have led to a global buckling of the SRC structure. Consequently, the SRC structure collapsed immediately after being struck by a small disturbance. In addition, analysis results of a simplified composite column further reveal the differences between the SRC structure construction procedure and the SS structure construction procedure. When the steel beams and columns of an SRC structure are continuously uplifted and assembled without consideration of the construction progress of the lower-level RC beams and columns, the self-weight of the upper-level SRC steel frame might exceed the critical load of the SRC structure under construction, consequently leading to the collapse of the structure. Therefore, in order to prevent the SRC structure from collapsing during construction, proper designs and safe assembly procedures for SRC structures should be formulated to perfectly match the assembly procedure of the steel frame with that of the RC part. (C) 2019 Published by Elsevier Ltd.
机译:如果钢筋混凝土(SRC)结构具有不当的施工程序,则由于不可预测的施工载荷,它可能会崩溃。本研究旨在探索建设安全,以台湾建设的新工厂的SRC结构崩溃事件为例。通过二阶分析,研究结果表明,坍塌事件的原因可能是,在施工过程中,设计师未能考虑钢框的整体自我重量,这些钢框架超过了临界当时的结构负荷。这种监督可能导致SRC结构的全球屈曲。因此,通过小扰动击中后,SRC结构立即折叠。另外,简化复合柱的分析结果进一步揭示了SRC结构施工过程与SS结构施工过程之间的差异。当SRC结构的钢束和柱连续抬起并组装而不考虑下级RC梁和柱的施工进度时,上层SRC钢框架的自重可能超过了临界负荷SRC结构正在建设中,因此导致结构的崩溃。因此,为了防止SRC结构在施工期间塌陷,应配制用于SRC结构的适当设计和安全组装程序,以与RC部件的钢框架的组装过程完全匹配。 (c)2019年由elestvier有限公司发布

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