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首页> 外文期刊>Journal of structural engineering >Experimental Behavior of Concrete-Filled Steel Tube Columns Using Ultrahigh-Strength Steel
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Experimental Behavior of Concrete-Filled Steel Tube Columns Using Ultrahigh-Strength Steel

机译:超高强度钢钢管混凝土柱的试验性能

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摘要

Concrete-filled steel tube (CFT) columns offer significant advantages over columns made of either steel or concrete alone, such as large energy dissipation and increased strength and stiffness. To further improve the seismic performance of these columns, an experimental investigation was conducted into CFT columns using ultrahigh-strength steel. More specifically, seven square and circular specimens made with high-strength and conventional steel were subjected to constant compressive axial load and cyclic flexural load protocols with two and 20 cycles imposed at each drift level. Based on the test results, the influence on the CFT's cyclic behavior of the high-strength steel, cross-sectional shape, axial load, and number of cycles in lateral loading history was studied. In comparison with the conventional steel specimens, larger elastic deformation, higher strength, and delay of local buckling were observed in the high-strength steel specimens, while compared with the circular specimens, the square specimens sustained larger drift angles without fracture of their steel tubes because of the development and progress of serious local buckling. Furthermore, a simple analytical model based on the concept of the superposed strength method was proposed. The accuracy of this model was confirmed with the experimental results.
机译:与仅由钢或混凝土制成的立柱相比,钢管混凝土(CFT)立柱具有明显的优势,例如,耗能大,强度和刚度高。为了进一步提高这些柱的抗震性能,使用超高强度钢对CFT柱进行了实验研究。更具体地说,对由高强度和常规钢制成的七个正方形和圆形试样进行恒定的压缩轴向载荷和循环挠曲载荷方案,并在每个漂移级别施加两个和20个循环。根据测试结果,研究了在横向载荷历史中对高强度钢CFT循环行为,截面形状,轴向载荷以及循环次数的影响。与常规钢试样相比,高强度钢试样观察到较大的弹性变形,较高的强度和局部屈曲延迟,而与圆形试样相比,方形试样承受较大的漂移角而钢管没有破裂由于严重的局部屈曲的发展和进步。此外,提出了一种基于叠加强度法概念的简单分析模型。实验结果证实了该模型的准确性。

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