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Ultimate strength prediction of steel-concrete composite cellular beams with PCHCS

机译:用PCHCS的钢混凝土复合蜂窝梁的极限强度预测

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This paper aims to predict the ultimate behavior of steel?concrete composite cellular beams using precast hollow core slabs. A finite element model is developed by geometrical non-linear analysis. A parametric study is carried out, considering symmetric and asymmetric sections with precast hollow core slabs. The key parameters such as the web-post width and the opening diameter are varied, as well as the presence of the concrete topping. A total of 120 analyses were performed. The results are compared with typical composite slab models using cast in-situ concrete. For symmetrical sections, considering the hollow core slabs, although some observations occurred with the formation of the plastic mechanism, the predominant failure mode was the web-post buckling. For asymmetric sections, the predominant failure mode was the combination of the plastic mechanism with the web-post buckling accompanied by the shear connector rupture. In both cases, considering symmetrical and asymmetrical sections, excessive cracking was observed in the upper part of the hollow core slab. In cases where the end-post was greater than the web-post, there was damage at the upper region of the hollow core slab/concrete topping, close to the support. The numerical models of composite cellular beams with hollow core slabs, when compared with the models of composite cellular beams with composite slabs, showed greater efficiency in structural behavior. The results imply that the strength of the composite cellular beams was not limited only by the strength of the steel cellular beam, but also, of the slab, due to the resistance to shear stress.
机译:本文旨在预测钢的最终行为?使用预制空心芯板的混凝土复合蜂窝梁。通过几何非线性分析开发了有限元模型。考虑具有预制空心芯板的对称和不对称部分进行参数研究。诸如网柱宽度和开口直径的关键参数,以及混凝土顶部的存在。总共进行120分析。将结果与典型的复合板式模型进行比较,使用铸造浇铸混凝土。对于对称部分,考虑到中空芯板,尽管在形成塑料机构的形成时,占地面积的失效模式是腹板屈曲。对于不对称部分,主要的故障模式是塑料机构与伴随剪切连接器破裂的旋扣的组合。在两种情况下,考虑对称和不对称部分,在空心芯板的上部观察到过度裂缝。在最终柱大于网柱的情况下,空心芯板/混凝土顶部的上部区域存在损坏,靠近支撑。与具有复合板坯的复合蜂窝梁模型相比,具有中空芯板的复合蜂窝梁的数值模型,在结构行为中表现出更高的结构性效率。结果意味着由于抗剪切应力的阻力,复合蜂窝梁的强度仅受钢蜂窝梁的强度而且是板坯的强度。

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