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Experimental Study on Post-Earthquake Fire Resistance of Ductile Concrete-Filled Double-Skin Tube Columns

机译:延性混凝土填充双层皮管柱震后抗火性能的试验研究

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Experimental studies were conducted to examine the behavior of concrete-filled double-skin tube (CFDST) columns exposed to fire after being subjected to simulated seismic loads. The experiments were conducted in two separate phases, consisting of (1) the quasi-static cyclic tests, followed by (2) fire tests. Three nominally identical column specimens were constructed for these studies. One of the specimens was directly tested under fire to quantify its resistance in an undamaged condition. The other two specimens were first subjected to quasi-static cyclic lateral loads, imposing varying degrees of lateral drift to simulate two different seismic events with moderate and high damage levels before being exposed to fire. Both of the specimens were pushed to the maximum drift of 6-6.5% with different residual drifts of 1.4 and 3.9% for moderate and high damage levels, respectively. The undamaged and damaged columns were then subjected to the same fire tests in accordance with a standard temperature-time curve while sustaining an axial load until the column failed due to global buckling. Local buckling of the tubes was also observed in the specimens due to the thermal expansion and separation from the concrete. Overall the results showed marginal differences in the fire resistance of the three specimens, providing evidence for the resilient performance of these columns under post-earthquake fire scenarios. An additional quasi-static cyclic loading test was conducted on the specimen that had been exposed to fire without any prior damage to investigate the behavior of the column subjected to seismic loads after the fire test. Differences in behavior were modest, except for a 5.7% drop in strength attributed to permanent degradation in material properties due to the fire test. (C) 2014 American Society of Civil Engineers.
机译:进行了实验研究,以研究遭受模拟地震荷载作用后着火的混凝土填充双皮管(CFDST)柱的性能。实验分两个阶段进行,包括(1)准静态循环测试,然后是(2)耐火测试。为这些研究构建了三个名义上相同的柱样本。其中一个样品直接在火下测试,以量化其在未损坏条件下的抵抗力。其他两个样本首先受到准静态周期性侧向载荷,施加不同程度的侧向漂移,以模拟两种不同的地震事件,在遭受火灾之前,它们具有中等和较高的破坏水平。对于中等和较高的损伤水平,两个标本都被推至最大漂移为6-6.5%,而不同的残余漂移分别为1.4和3.9%。然后,按照标准的温度-时间曲线对未损坏和损坏的柱子进行相同的耐火测试,同时保持轴向载荷,直到柱子由于整体屈曲而失效。由于热膨胀和与混凝土的分离,在标本中还观察到了管子的局部弯曲。总体而言,结果表明这三个样品的耐火性略有差异,为这些柱在地震后火灾情况下的回弹性能提供了证据。对暴露于火中且无任何先验损坏的试样进行了额外的准静态循环载荷试验,以研究在火试验后承受地震载荷的柱的性能。行为差异不大,除了强度下降5.7%归因于耐火测试导致材料性能永久下降。 (C)2014年美国土木工程师学会。

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