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Steel-Concrete-Steel sandwich slabs with lightweight core - Static performance

机译:钢-混凝土-钢夹芯板,轻型芯-静态性能

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摘要

This paper investigates the static performance of Steel-Concrete-Steel (SCS) sandwich slabs which consist of an ultra-lightweight concrete core sandwiched between two steel plates. Special J-hook connectors have been developed to develop composite action between the concrete core and the two steel plates. The core is made of lightweight concrete of density less than 1450 kg/m3. Laboratory tests were carried out on eight SCS sandwich slabs under centrally applied patch load. Test results showed that the mode of failure and crack pattern of SCS sandwich slabs were very similar to those of reinforced concrete slabs especially when the concrete core and steel plates act in a fully composite manner. Flexural and punching are the primary modes of failure. After flexural yielding, membrane action developed in the slab due to the effectiveness of J-hook connectors in maintaining composite action which further increases its load carrying capacity after flexural yielding. Theoretical models are proposed to predict the flexural and punching resistance and a good correlation with test results is obtained. A large deflection analysis considering plate membrane action is also proposed to predict the force deflection relation of SCS sandwich slabs.
机译:本文研究了钢-混凝土-钢(SCS)夹心板的静态性能,该夹心板由夹在两块钢板之间的超轻混凝土芯组成。已经开发了特殊的J型钩连接器,以在混凝土芯和两个钢板之间产生复合作用。核心由密度小于1450 kg / m3的轻质混凝土制成。在集中施加的贴片载荷下,对八块SCS夹心板进行了实验室测试。测试结果表明,SCS夹心板的破坏模式和裂缝模式与钢筋混凝土板非常相似,特别是当混凝土芯和钢板以完全复合的方式作用时。弯曲和冲压是主要的破坏方式。弯曲屈服后,由于J形钩连接器在保持复合作用方面的有效性,在平板中产生了膜作用,这在弯曲屈服后进一步提高了其承载能力。提出了理论模型来预测抗弯强度和抗冲孔性,并与测试结果具有良好的相关性。还提出了考虑板膜作用的大挠度分析,以预测SCS夹心板的力挠关系。

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