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Negative bending behavior of novel U-shaped steel and concrete composite beams

机译:新型U形钢和混凝土复合梁的负弯曲行为

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The negative bending behavior of the reinforcement stiffened cold-formed U-shaped steel and concrete composite beams (RCUCBs) is discussed in this paper. The negative bending experiment on 10 specimens were conducted and the damage process and corresponding static behavior in each stage are defined. Two distinct failure modes were found depending on whether the inverted U-shaped reinforcement (IUR) is installed or not: ductile plastic failure mode (when installed) and sudden elastic failure mode (when not installed). The IUR was observed to keep the integral action and improve the bending capacity and ductility of a RCUCB. The closed steel U-section stiffened by the reinforcement truss provides significant confinement to the encased concrete and even maintains its integrity after concrete cracking. The study results show that the plastic hinging of the framed RCUCB under vertical loads spreads to about L0/6 and suggest that the effective slab width in the negative moment zone is Be = L0/3 + b, similar to the positive moment case. Lastly, a negative bending design method was proposed, giving good calculations compared to the test results. The slab reinforcement, steel U-section, encased concrete, and bottom reinforcement contribute 53%, 30%, 11%, and 6% respectively to the negative bending capacity on average.
机译:本文讨论了加强加强冷形成的U形钢和混凝土复合梁(RCUCB)的负弯曲行为。对10个标本进行负弯曲实验,并定义了每个阶段的损伤过程和相应的静态行为。发现了两个不同的故障模式,这取决于是否安装了倒U形钢筋(IUR)是否安装:延展性塑料失效模式(安装时)和突然弹性故障模式(未安装时)。观察到IUR以保持整体作用,提高RCUCB的弯曲能力和延展性。加固桁架加强的封闭钢U形段为包装的混凝土提供了显着的限制,甚至在混凝土裂缝后保持其完整性。该研究结果表明,垂直载荷下框架Rcucb的塑料铰接扩散到约L0 / 6,并表明负片中区域中的有效板坯宽度为= L0 / 3 + B,类似于正时壳。最后,提出了一种负弯曲设计方法,与测试结果相比,给出了良好的计算。板坯加固,钢U形段,混凝土和底部增强件分别贡献53%,30%,11%和6%平均弯曲能力。

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