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Cyclic performance of repaired concrete-filled steel tubular columns after exposure to fire

机译:修复的钢管混凝土柱着火后的循环性能

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摘要

This paper provides new test data of cyclic behavior of repaired concrete-filled steel tubular (CFST) columns after exposure to fire, the fire-damaged CFST columns being strengthened by wrapping the original columns by concrete and a thin-walled steel tube. The test parameters included the cross-section type (circular, square and rectangular), and the axial load level (0, 0.3, 0.6). It was found that all the test specimens behaved in a ductile manner and testing proceeded in a smooth and controlled way. Based on the experiment measurements, the ultimate lateral strength, flexural stiffness, dissipated energy and ductility of the columns are analyzed and compared. The test results indicate that the ultimate lateral strength and flexural stiffness of concrete-filled hollow structural columns decrease after exposure to fire, however, the ductility of the columns was not adversely affected due to the fire exposure. The test results also indicate that the strength and stiffness of the fire-damaged columns can be restored over the original level of the specimens.
机译:本文提供了修复后的钢管混凝土(CFST)柱着火后的循环性能的新测试数据,通过用混凝土和薄壁钢管包裹原始柱来增强受火灾破坏的CFST柱。测试参数包括横截面类型(圆形,正方形和矩形)和轴向载荷水平(0、0.3、0.6)。发现所有试样均表现出延展性,并且测试以平稳且受控的方式进行。根据实验测量结果,分析并比较了柱的极限横向强度,抗弯刚度,耗能和延性。试验结果表明,空心混凝土结构柱受火后的极限侧向强度和抗弯刚度降低,但是,柱子的延展性并未因受火而受到不利影响。测试结果还表明,可以在标本的原始水平上恢复受火柱的强度和刚度。

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