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首页> 外文期刊>Journal of structural engineering >Load Transfer and Collapse Resistance of RC Flat Plates under Interior Column Removal Scenario
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Load Transfer and Collapse Resistance of RC Flat Plates under Interior Column Removal Scenario

机译:内柱拆除场景下钢筋混凝土平板的荷载传递和抗压倒性

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Reinforced concrete (RC) flat-plate structures are vulnerable to punching shear failure at their slab-column connections, potentially leading to a catastrophic progressive collapse. In practice, the slab-column connection above an interior column, removed due to abnormal loads, may be subjected to a concentrated downward force because of the absence of the supporting column and further being pushed as a result of different live load intensities on individual stories. This force is different from the full design load that the column withstands in normal situations and, combined with the gravity load acting on the slab, may cause punching shear failure at the interior slab-column connection. This will further trigger failure propagation to the surrounding slab-column connections. This paper presents the experimental tests performed on two identical large-scale 2x2-bay RC flat-plate specimens under an interior column removal scenario. A 5-kPa uniformly distributed load was applied first to the slab followed by an incremental concentrated force imposed on the slab-column connection above the removed interior column. The complete collapse-resistant behavior and load redistribution pattern of the specimens were investigated and are reported herein. Results show that more than 90% of the applied concentrated force is solely distributed to the four nearest adjacent columns. Three load-carrying mechanism phases, in the form of flexural, tensile membrane, and a combination of one-way catenary and dowel actions can be distinguished in resisting the applied concentrated load.
机译:钢筋混凝土(RC)平板结构在板-柱连接处容易受到冲切剪切破坏,有可能导致灾难性的逐渐倒塌。实际上,由于异常荷载而被移除的内部柱上方的楼板-柱连接可能会由于没有支撑柱而受到集中的向下力,并且由于各个楼层上不同的活荷载强度而进一步被推入。该力不同于正常情况下柱子承受的全部设计载荷,再加上作用在平板上的重力载荷,可能会导致内部平板-柱连接处的冲压剪切失败。这将进一步触发故障传播到周围的平板-柱连接。本文介绍了在内部柱去除情况下对两个相同的大型2x2-bay RC平板试样进行的实验测试。首先将5 kPa均匀分布的载荷施加到平板上,然后将一个递增的集中力施加到已拆除内柱上方的平板-柱连接上。研究了样品的完整抗倒塌行为和载荷再分布模式,并在此处报告。结果表明,超过90%的施加集中力仅分配给四个最近的相邻柱。在抵抗施加的集中载荷时,可以区分挠曲,拉伸膜形式以及单向悬链和定位销作用的组合形式的三个承载机制阶段。

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