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Experimental research and finite element analysis on seismic behavior of CFRP-strengthened seismic-damaged composite steel-concrete frame columns

机译:CFRP加固抗震组合钢混凝土框架柱的抗震性能试验研究与有限元分析

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Four composite steel concrete frame columns were constructed to investigate the seismic performance of seismic-damaged composite steel concrete frame columns strengthened with carbon fiber reinforced polymer. The test consisted of pre-damage loading, rehabilitation with carbon fiber reinforced polymer and destruction tests under lateral cyclic loading. The effectiveness of strengthening seismic-damaged columns with carbon fiber reinforced polymer and the strengthening effect on different degrees of seismic damage were studied. Also, based on the test data, various parameters were obtained, including the hysteretic loops, skeleton curves, axial compression ratio, number of pasted layers of carbon fiber reinforced polymer, ductility, dissipative ability, ultimate strength, stiffness degradation, etc. The results revealed that the failure mode of all the columns was bending failure. The study indicates that the rehabilitated columns can reach or even exceed the level of their original seismic performance before seismic damage up to a certain extent of damage level. Composite steel concrete frame columns strengthened with carbon fiber reinforced polymer sheets were simulated using the finite element analysis software ABAQUS. The comparison of the results of the conducted analytical study with the experimental results revealed that they are basically consistent with each other.
机译:构造了四个复合钢混凝土框架柱,以研究碳纤维增强聚合物加固的地震破坏复合钢混凝土框架柱的抗震性能。该测试包括损坏前的载荷,碳纤维增强聚合物的修复以及在横向循环载荷下的破坏测试。研究了碳纤维增强聚合物加固抗震柱的有效性以及不同程度地震破坏的加固效果。此外,基于测试数据,获得了各种参数,包括磁滞回线,骨架曲线,轴向压缩比,碳纤维增强聚合物的粘贴层数,延展性,耗散能力,极限强度,刚度降低等。结果表明,所有柱子的破坏模式都是弯曲破坏。研究表明,修复后的柱子可以达到甚至超过地震破坏之前的原始地震性能水平,直至达到一定程度的破坏水平。使用有限元分析软件ABAQUS对碳纤维增强聚合物板加固的复合钢混凝土框架柱进行了模拟。进行的分析研究的结果与实验结果的比较表明,它们基本上相互一致。

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