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Seismic behaviour of steel-reinforced ultra-high-strength concrete composite frame: Experimental study

机译:钢筋超高强度混凝土复合框架的地震行为:实验研究

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This article provides the results of an experimental study on the seismic behaviour of the steel-reinforced ultra-high-strength concrete frame. A two-bay and three-story one-fourth scale steel-reinforced ultra-high-strength concrete frame specimen was tested under simulated earthquake loading conditions. The seismic behaviours of the specimen, including the failure mode, concrete element cracks development, hysteresis loops, lateral load-carrying capacity, ductility, energy dissipation, strength and stiffness degradation, were investigated under low reversed cyclic lateral loading. The test results showed that the beam hinge failure mechanism of the steel-reinforced ultra-high-strength concrete frame was achieved. The steel-reinforced ultra-high-strength concrete frame would have rich and stable hysteretic loops when subjected to large axial load with an axial load ratio of 0.38. The roof and interstory ductility coefficients of the steel-reinforced ultra-high-strength concrete frame ranged from 5.06 to 6.78. The strength and stiffness degenerated gradually, indicating an excellent seismic behaviour of the steel-reinforced ultra-high-strength concrete frame with sufficient ductility and high energy dissipation capacity. The test and analysis results can be served as a design reference for practical engineering applications.
机译:本文提供了对钢筋超高强度混凝土框架的地震行为的实验研究结果。在模拟地震载荷条件下测试了双托架和三层一秒的钢筋增强超高强度混凝土框架标本。在低逆转的循环横向载荷下,研究了试样,包括故障模式,混凝土元件裂缝开发,滞后环,横向载荷能力,延展性,能量耗散,强度和刚度降解的抗震性能。测试结果表明,达到了钢筋超高强度混凝土框架的梁铰链故障机构。钢筋超高强度混凝土框架在具有轴向载荷比为0.38的轴向载荷的大轴向载荷时,钢筋增强的超高强度混凝土框架将具有丰富和稳定的滞回环。钢筋增强超高强度混凝土框架的屋顶和壁延展性系数范围为5.06至6.78。强度和刚度逐渐退化,表明钢筋增强超高强度混凝土框架具有足够的延展性和高能量耗散能力的优异地震性能。测试和分析结果可以作为实际工程应用的设计参考。

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