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首页> 外文期刊>Journal of Structural Engineering >Progressive Collapse of Flat Plate Substructures Initiated by Upward and Downward Punching Shear Failures of Interior Slab-Column Joints
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Progressive Collapse of Flat Plate Substructures Initiated by Upward and Downward Punching Shear Failures of Interior Slab-Column Joints

机译:内板-柱节点上下冲剪破坏引发的平板下部结构渐进式坍塌

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A slab-column joint in a flat plate structure may exhibit upward or downward punching shear (UPS and DPS) failure when subjected to different abnormal loading conditions. This can cause distinct residual deformations of the slabs, which in turn influences the behavior of the consequent progressive collapse of the entire structure. This paper presents two experimental tests on two 2 x 2-bay, 1/3-scaled flat plate substructure specimens. Both tests were conducted in two loading phases. In the first loading phase (LP-1), the interior column of specimens UPS-Sub and DPS-Sub was subjected to a gradually increased upward and downward concentrated load, respectively, until punching failure occurred at the interior slab-column joint. In the second loading phase (LP-2), an incremented downward uniformly distributed load was applied on the slab of both specimens up until the ultimate state just before a complete collapse of the slab. After LP-1, local and global damage patterns were observed respectively from UPS-Sub and DPS-Sub. The punching shear strength and the corresponding displacement of the interior joint in UPS-Sub were found to be 58.2 higher and 53.6 lower, respectively, than the corresponding ones in DPS-Sub. In LP-2, due to the upward residual deformation of the slab in UPS-Sub as a result of LP-1, its first peak load, vertical displacement, and horizontal displacement under compressive membrane action were, respectively, 8.4, 91.1, and 57.1 larger than those in DPS-Sub. On the other hand, the postpunching peak load of the two specimens under tensile membrane action were identical. To offer an in-depth understanding of the mechanical behavior that resulted from upward or download punching shear failure, the punching shear strengths of the interior slab-column joints and collapse resistance of the substructures were also analytically investigated. (C) 2021 American Society of Civil Engineers.
机译:平板结构中的板柱接头在承受不同的异常载荷条件时,可能会出现向上或向下冲切(UPS 和 DPS)失效。这会导致楼板出现明显的残余变形,进而影响整个结构随之而来的渐进式倒塌行为。本文介绍了两个 2 x 2 开槽、1/3 比例平板子结构试样的两项实验测试。这两项测试均在两个加载阶段进行。在第一阶段(LP-1)中,试件UPS-Sub和DPS-Sub的内柱分别承受逐渐增加的向上和向下集中的荷载,直至内板柱接缝处发生冲孔破坏。在第二个加载阶段(LP-2),在两个试样的板上施加一个递增的向下均匀分布的荷载,直到板完全坍塌前的最终状态。在LP-1之后,分别从UPS-Sub和DPS-Sub观察到局部和全局损伤模式。UPS-Sub的冲切剪切强度和相应的内接头位移分别比DPS-Sub高58.2%和53.6%。在LP-2中,由于LP-1对UPS-Sub板坯的向上残余变形,其在压缩膜作用下的第一峰荷载、垂直位移和水平位移分别为8.4%、91.1%和57。比 DPS-Sub 大 1%。另一方面,两个试件在拉伸膜作用下的冲孔后峰值载荷是相同的。为了深入了解上下冲剪破坏导致的力学行为,还分析研究了内板-柱节点的冲剪强度和下部结构的抗倒塌强度。(C) 2021 年美国土木工程师协会。

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