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Experimental study on the effective width of flat slab structures under dynamic seismic loading

机译:地震作用下平板结构有效宽度的试验研究

摘要

This paper investigates the effective width of reinforced concrete flat slab structures subjected to seismic loading on the basis of dynamic shaking table tests. The study is focussed on the behavior of corner slab? column connections with structural steel I- or channel-shaped sections (shearheads) as shear punching reinforcement. To this end, a 1/2 scale test model consisting of a flat slab supported on four box-type steel columns was subjected to several seismic simulations of increasing intensity. It is found from the test results that the effective width tends to increase with the intensity of the seismic simulation, and this increase is limited by the degradation of adherence between reinforcing steel and concrete induced by the strain reversals caused by the earthquake. Also, significant differences are found between the effective width obtained from the tests and the values predicted by formula proposed in the literature. These differences are attributed to the stiffening effect provided by the steel profiles that constitute the punching shear reinforcement.
机译:本文基于动态振动台试验研究了地震作用下钢筋混凝土平板结构的有效宽度。该研究集中在角板的行为?带有I型钢或槽形截面结构(剪切头)的结构钢柱连接作为冲剪加固。为此,对由支撑在四个箱型钢柱上的平板组成的1/2比例测试模型进行了多次强度递增的地震模拟。从测试结果发现,有效宽度趋于随地震模拟的强度而增加,并且这种增加受到地震引起的应变反作用引起的钢筋与混凝土之间粘附力下降的限制。此外,从测试获得的有效宽度与文献中提出的公式预测的值之间也发现了显着差异。这些差异归因于构成冲切剪切钢筋的钢型材提供的加强效果。

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