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Experimental Study on Seismic Behavior of Full Encased Steel-Concrete Composite Columns

机译:钢管混凝土全包裹组合柱抗震性能试验研究

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摘要

With the rapid development of high-rise buildings in China, the steel-concrete composite structure is widely used because of its excellent seismic performance. So far, all of the high-rise buildings that rise more than 300 m in China are of a steel-concrete composite structure, which are designed based on Chinese codes. During the construction process, two main problems are encountered, as follows: (1) minimum stirrup ratio, and (2) embedded depth ratio for steel-concrete composite columns, which are strictly limited by Chinese codes. To solve those problems, 26 steel-concrete composite columns were tested under low cyclic reversed loading to simulate an earthquake load. By analyzing the failure patterns, hysteresis loops, skeleton curves, energy-dissipation capacity, and ductility of such specimens, the influence of the axial compression ratio, stirrup ratio, steel section shape, and steel embedded depth ratio on the seismic behavior of steel-concrete composite members are discussed. In accordance with the test results, the minimum stirrup ratio and embedded depth ratio for steel-concrete composite columns can be reduced relative to the limiting value given by Chinese codes. A formula for minimum stirrup ratio and a minimum embedded depth ratio for steel-concrete composite columns are recommended in accordance with an analysis of the test results.
机译:随着中国高层建筑的飞速发展,钢混凝土复合结构由于其优异的抗震性能而被广泛使用。迄今为止,在中国,所有海拔超过300 m的高层建筑都是钢-混凝土复合结构的,它们是根据中国规范设计的。在施工过程中,遇到两个主要问题,如下:(1)最小箍筋比,(2)钢-混凝土组合柱的埋深比,这受到中国法规的严格限制。为了解决这些问题,在低循环反向荷载下对26根钢混凝土组合柱进行了测试,以模拟地震荷载。通过分析此类试样的破坏模式,磁滞回线,骨架曲线,耗能能力和延性,分析其轴向压缩比,箍筋比,钢截面形状和钢埋深比对钢的抗震性能的影响。讨论了具体的复合构件。根据测试结果,相对于中文法规给出的极限值,可以降低钢混混凝土柱的最小箍筋比和嵌入深度比。根据测试结果的分析,建议使用钢-混凝土复合柱的最小箍筋比和最小嵌入深度比的公式。

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