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Full-Scale Test of Composite Frame under Large Cyclic Loading

机译:大循环荷载下复合框架的全尺寸试验

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摘要

This paper presents an experimental study on a steel moment frame with reinforced concrete (RC) floor slab that was subjected to horizontal cyclic loading leading to very large deformations. The primary objective of this test was to examine the interaction (composite action) between the steel beam and the RC floor slab. The steel beam moment capacity increased about 1.5 times in positive bending with the presence of the RC floor slab. During small beam rotations of 0.002-0.003 rad, the beam strength increased 1.2-1.4 times in negative loading, but composite action did not affect the negative beam moment capacity for larger rotations. The effective width estimated from the slab compressive force approximately equals the column width. Fracture at the bottom flange was notable due to the presence of the slab in the composite beam. Complete separation of the beam-to-column connections was not achieved even at a beam rotation of 0.13 rad, under which the composite connections still possessed bending resistance equal to about 10 percent of the maximum bending capacity when sustaining positive bending.
机译:本文对钢筋混凝土楼板的钢制框架进行了试验研究,该框架承受水平循环荷载,导致很大的变形。该测试的主要目的是检查钢梁与RC楼板之间的相互作用(复合作用)。在存在RC楼板的情况下,钢梁在正弯时的弯矩承载力提高了约1.5倍。在0.002-0.003 rad的小束旋转过程中,负载荷下的束强度提高了1.2-1.4倍,但复合作用不会影响较大旋转下的负束矩能力。根据平板压缩力估算的有效宽度大约等于柱宽。由于复合梁中存在平板,底部法兰处的断裂明显。即使在梁旋转0.13 rad时,梁对柱连接也无法完全分离,在这种情况下,复合连接在保持正向弯曲时仍具有相当于最大弯曲能力的10%左右的抗弯强度。

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