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首页> 外文期刊>ACI Structural Journal >Design of Steel Fiber-Reinforced High-Strength Concrete-Encased Steel Short Columns and Beams
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Design of Steel Fiber-Reinforced High-Strength Concrete-Encased Steel Short Columns and Beams

机译:钢纤维增强高强度混凝土包装钢短柱和梁的设计

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摘要

This study explores the possibility of completely replacing traditional steel bar reinforcement by steel fibers in high-strength concrete-encased steel columns, showing potential for ductile structural behavior and reduction in construction time. Compression tests with varying eccentricities of loading were conducted on nine concrete-encased steel short columns containing different dosages of hooked-end steel fibers. The specimens also contained small straight steel fibers to control the propagation of micro-cracks. In addition, three beams were tested under four-point bending to obtain the ultimate moment-carrying capacity of the composite section under pure bending. The test results were used to plot the axial load-bending moment (N-M) interaction diagram of steelfiber-reinforced high-strength concrete-encased steel columns without traditional reinforcement. Two analytical approaches were proposed to predict the N-M interaction diagram, and their accuracy was verified against the test results. Parametric studies show that the load-carrying capacities of concrete-encased steel columns with steel fibers only are comparable to those with traditional steel bar reinforcement. The research demonstrated that the replacement of traditional steel bar reinforcement by steel fibers shows promise for application in high-strength concrete-encased steel columns.
机译:本研究探讨了在高强度混凝土钢柱中通过钢纤维完全取代传统钢筋加固的可能性,显示出延性结构行为的潜力和施工时间的降低。在含有不同剂量的钩端钢纤维的九个混凝土包装的钢短柱上进行具有不同偏心的压缩试验。标本还含有小型直钢纤维,以控制微裂纹的传播。另外,在四点弯曲下测试三个光束,以在纯弯曲下获得复合部分的最终载体容量。测试结果用于绘制钢筋弯曲力矩(N-M)相互作用的钢柱,无需传统的增强。提出了两种分析方法来预测N-M相互作用图,并根据测试结果验证了它们的准确性。参数研究表明,具有钢纤维的混凝土封装的钢柱的承载能力与具有传统钢棒加固的钢柱相当。该研究表明,钢纤维更换传统的钢筋加固,展示了在高强度混凝土钢柱中的应用。

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