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Experimental studies of 3D RC substructures under exterior and corner column removal scenarios

机译:外部和角柱移除场景下的3D RC子结构的实验研究

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In a cast in-situ reinforced concrete (RC) beam-slab system, concurrent development of secondary mechanisms, i.e. catenary action in beams and tensile membrane action in slabs, may significantly increase load-carrying and deformation capacities of structures under missing column scenarios. Previous researches mainly focused on structural behaviour of individual RC beams, slabs or beam-slab systems, without clearly defining structural interactions among slabs, beams and columns. To obtain a better understanding of these complex interactions, a systematic study starting from RC skeletal frames and culminating in frame-slab systems is conducted under corner and exterior column removal scenarios, which are among the most critical scenarios for analysis of structural resistance towards progressive collapse. Four specimens were included in this programme, i.e. under corner column loss event, one skeletal frame (COR) and one frame -slab (S-COR) specimens were tested to failure, while one skeletal frame (EXT) and one frame-slab (S-EXT) specimens were loaded to collapse under exterior column loss scenario. In 3D beam-slab tests, it is very challenging to design a test setup with complete measurements of all support reactions due to a great number of statical indeterminacies. The novelty of the paper is to address this aspect. Through the proper test setup and instrumentation of structural behaviour of RC 3-D skeletal frames under corner and exterior column loss scenarios, interactions between the columns and beams could be elucidated. In turn, the slab contributions could be isolated and quantified through direct comparisons between skeletal frame and frame -slab specimens for both scenarios. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在现浇钢筋混凝土(RC)梁板系统中,同时发生的次级机制(即梁中的悬链作用和板中的拉伸膜作用)的共同发展可能会显着增加缺少柱情况下结构的承载力和变形能力。先前的研究主要集中在单个RC梁,平板或梁平板系统的结构行为,而没有明确定义平板,梁和柱之间的结构相互作用。为了更好地理解这些复杂的相互作用,从钢筋混凝土骨架框架开始到框架平板系统达到顶点的系统研究是在转角和外柱拆除方案下进行的,这是分析结构抗渐进倒塌的最关键方案之一。此程序中包括了四个标本,即在角柱丢失事件下,测试了一个骨架框架(COR)和一个骨架平板(S-COR)的标本是否失效,而一个骨架框架(EXT)和一个骨架平板( S-EXT)标本在外柱损失情况下被加载以塌陷。在3D梁板测试中,由于存在大量的静态不确定性,因此设计一种能够完整测量所有支撑反应的测试装置非常具有挑战性。本文的新颖之处在于解决了这一方面。通过适当的测试设置和在角和外部柱损失情况下对RC 3-D骨架框架的结构行为的检测,可以阐明柱与梁之间的相互作用。反过来,对于这两种情况,可以通过直接比较骨架框架和框架平板样本来隔离和量化平板的贡献。 (C)2017 Elsevier Ltd.保留所有权利。

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