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Eccentric compression behavior of concrete-encased-and-filled steel tube columns with high-strength circular steel tube

机译:高强圆钢管混凝土包裹钢管柱的偏心受压性能

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An experimental research was conducted for the eccentric compression behavior of concrete-encased-and-filled steel tube (CEFT) columns with high-strength circular steel tube. Five eccentrically loaded columns and one concentrically loaded column were tested under monotonic axial compression. The parameters of the test specimens included axial-load eccentricity, tie spacing, and the use of concrete encasement. In addition to conventional perimeter ties, U-cross ties were used to prevent the premature spalling of thin concrete encasement as well as local buckling of longitudinal rebars. Although early vertical cracking occurred at the compressive face, the outer concrete significantly contributed to the stiffness and strength of the composite column without the premature failure. The test strengths were compared with the predictions of current design codes, addressing contributions of the whole encasement. The CEFT specimens showed substantial ductility even after the concrete crushing, owing to the increased resistance of the high-strength circular steel tube and confined infill concrete. To verify overall behavior of the test specimens, nonlinear numerical analysis using a fiber model was performed.
机译:对高强度圆形钢管混凝土包裹钢管柱的偏心受压性能进行了试验研究。在单调轴向压缩下测试了五个偏心柱和一个同心柱。试样的参数包括轴向载荷偏心率,扎带间距和混凝土外包装的使用。除了传统的周边扎带之外,U形交叉扎带还用于防止薄混凝土外壳过早剥落以及纵向钢筋的局部屈曲。尽管早期的竖向裂缝出现在压缩面上,但外层混凝土在不引起过早破坏的情况下显着地促进了复合柱的刚度和强度。将测试强度与当前设计规范的预测值进行比较,以解决整个外壳的影响。由于高强度圆形钢管和密闭填充混凝土的抗力增加,即使在混凝土破碎后,CEFT试样也显示出相当大的延展性。为了验证试样的整体性能,使用纤维模型进行了非线性数值分析。

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