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Behavior of a Two-Way Lightweight Steel–Concrete Composite Slab Voided with Thin-Walled Core Boxes towards Sustainable Construction

机译:双向轻质钢混凝土综合板坯与薄壁芯盒朝向可持续建筑的行为

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摘要

High-performance engineered structural systems are crucial for sustainable development in the field of construction. In our previous research, a novel steel–concrete composite beam with transverse and longitudinal hidden girders exhibited good flexural behavior and desirable ductility. However, there is a dearth of studies on the flexural response of a steel–concrete composite slab voided with thin-walled core boxes. Therefore, in this study, we investigated the overarching flexural mechanism of the proposed structure when subjected to uniform vertical loads. The experimental detection results illustrated that the deflection value of the composite beam was 95.75% less than the GB/T 50152-2012 recommendation. Numerical results further validated this observation. The recorded data from the strain profile at the mid-span of the frame girder indicated that there was a considerable membrane effect, which delayed the strain growth of rebars, yielding appreciable bearing capacity. Thus, two original approaches to predicting the ultimate load of this novel structure are proposed, considering limit analysis using the upper-bound method and the membrane effect, with the latter closely linked to the experimental results. The findings can promote the extensive application of similar sustainable systems and inspire further advancements in advanced engineering structures.
机译:高性能工程结构系统对于建设领域的可持续发展至关重要。在我们以前的研究中,一种具有横向和纵向隐藏梁的新型钢混凝土复合梁表现出良好的弯曲行为和理想的延展性。然而,有一种关于用薄壁芯盒空隙的钢混凝土复合板坯的弯曲响应的研究。因此,在本研究中,我们在经受均匀的垂直载荷时调查了所提出的结构的总体弯曲机制。实验检测结果表明,复合梁的偏转值小于GB / T 50152-2012推荐的95.75%。数值结果进一步验证了这种观察。来自框架梁中跨度的应变轮廓的记录数据表明存在相当大的膜效应,这延迟了钢筋的应变生长,产生了可观的承载力。因此,提出了两种原始方法来预测这种新颖结构的最终负荷,考虑使用上束法和膜效应的限制分析,后者与实验结果密切相关。该研究结果可以促进类似可持续系统的广泛应用,并激发先进的工程结构进一步的进步。

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