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Experimental study on dynamic responses of reinforced concrete frames under sudden column removal applying concentrated loading

机译:集中荷载作用下钢筋混凝土框架突然脱柱的动力响应试验研究

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This paper focuses on structural behaviour of storeys above the targeted column that is suddenly lost due to accidental/terrorist events. The pertinent question is whether these storeys will remain stable, or the ensuing dynamic motion will cause them to fail during the free-fall stage. It is assumed that the two-dimensional frame structure above the targeted column is in pristine state. Previous quasi-static studies on reinforced concrete beam-column structures under missing column scenario have highlighted the potential of catenary action on providing alternate load paths to prevent catastrophic collapse. However, corresponding dynamic tests, either did not share the same loading configuration with the static tests, or did not have sufficient headroom and the specimen hit the ground before catenary action could be fully mobilised. On this paper, a series of dynamic tests was carried Out for two-dimensional reinforced concrete beam-column frames simulating the sudden removal of a supporting column via a quick-release device. The specimens were loaded and hung by a mechanism Which could be released to effect free vibration. Development of catenary action, which has not yet been confirmed in any previous dynamic tests, was well captured. The study also showed the influence of inertial and strain rate effects on structural response. Most importantly, the dynamic tests applied the same method of concentrated loading at the middle joint as the previous quasi-static tests conducted on similar specimens. As a result, comparisons could be made on damage patterns and failure modes between the dynamic tests and the static tests. Compared to static environment, the dynamic tests only took a few seconds and their behaviours are closer to the actual behaviour of the storeys that undergo free-fall acceleration. (C) 2017 Published by Elsevier Ltd.
机译:本文重点关注目标柱上方的楼层的结构行为,这些行为由于意外/恐怖事件而突然丢失。相关的问题是这些楼层是否将保持稳定,或者随后的动态运动将导致它们在自由落体阶段失败。假设目标列上方的二维框架结构处于原始状态。先前在缺少柱的情况下对钢筋混凝土梁柱结构进行的准静态研究已突出了悬链线作用在提供备用荷载路径以防止灾难性倒塌方面的潜力。但是,相应的动态测试要么没有与静态测试共享相同的载荷配置,要么没有足够的动态余量,并且在完全动员悬链线作用之前,样本跌落到地面。在本文中,对二维钢筋混凝土梁柱框架进行了一系列动态测试,模拟了通过快速释放装置突然拆除支撑柱的过程。样品通过可释放以产生自由振动的机制装载和悬挂。很好地捕获了悬链作用的发展,这在以前的任何动态测试中都尚未得到证实。研究还显示了惯性和应变率效应对结构响应的影响。最重要的是,动态测试在中间接头处采用的集中荷载方法与之前对类似试样进行的准静态测试相同。结果,可以对动态测试和静态测试之间的损坏模式和失效模式进行比较。与静态环境相比,动态测试仅花费了几秒钟的时间,其行为更接近经受自由落体加速的楼层的实际行为。 (C)2017由Elsevier Ltd.发布

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