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Experimental study on concrete-encased composite columns with separate steel sections

机译:用单独的钢部分混凝土复合柱的实验研究

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This paper presents an experimental study on the behavior of concrete-encased composite columns with multi-separate steel sections subjected to axial and eccentric loads. Six 1/4-scaled concrete-encased composite columns were tested under static loads. The specimens were identical in geometric dimensions and configurations, and the parameter of this experiment was the eccentricity ratio of the applied load. Each two of the specimens were loaded with 0, 10%, and 15% eccentricity ratios. The capacity, deformation pattern, and failure mode of the specimens were carefully examined. Test results indicate that full composite action between the concrete and the steel sections can be realized even though the steel sections do not connect with one another. The concrete-encased composite columns can develop stable behavior and sufficient deformation capacity by providing enough transverse reinforcing bars. Capacities of the specimens were evaluated based on both the Plain Section Assumption (PSA) method and the superimposition method. Results show that U.S. and Chinese codes can be accurate and safe in terms of bending capacities. Test results also indicate that the ACI 318 and Mirza methods give the best predictions on the flexural stiffness of this kind of composite columns.
机译:本文介绍了用轴向和偏心载荷的多单独钢部分采用混凝土包装柱的行为的实验研究。在静态载荷下测试六个1/4缩放的混凝土复合柱。标本在几何尺寸和配置中相同,该实验的参数是施加的载荷的偏心率。将两种样品加载0,10%和15%的偏心率。仔细检查样本的容量,变形模式和故障模式。测试结果表明,即使钢部件不彼此连接,也可以实现混凝土和钢部分之间的完全复合动作。通过提供足够的横向加强杆,混凝土复合柱可以通过提供足够的横向加强杆来发展稳定的行为和足够的变形能力。根据普通截面假设(PSA)方法和叠加方法,评估样本的容量。结果表明,在弯曲能力方面,美国和中文代码可以准确和安全。测试结果还表明ACI 318和MIRZA方法给出了这种复合柱的弯曲刚度的最佳预测。

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