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首页> 外文期刊>Journal of Constructional Steel Research >Finite element modelling of steel-concrete composite beams with profiled steel sheeting
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Finite element modelling of steel-concrete composite beams with profiled steel sheeting

机译:钢板压型钢板混凝土组合梁的有限元建模

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摘要

Steel-concrete composite beams have been widely used in modem construction industry, where headed shear stud connectors are commonly welded through profiled steel sheeting to ensure full/partial composite action between the beam and the composite slab. For such composite beams, there are complex interactions between different components, leading to different failure modes. Finite element (FE) analysis could be used to understand the fundamental behaviour of such beams. But previous FE models have adopted various assumptions to simplify the modelling of some complex interactions such as the interaction between the shear studs and concrete. Accordingly, those FE models have limitations to capture certain types of failure modes. Meanwhile, the actual forces carried by the studs and profiled steel sheeting have not been quantitatively determined. In this context, this paper aims to develop a detailed FE model for composite beams with profiled steel sheeting by considering realistic interaction between different components, fracture of the shear studs and profiled steel sheeting, as well as tensile and compressive damage in concrete. The developed FE model can satisfactorily predict the full-range load-deformation curves of the composite beams and the shear force-slip relationship of the embedded shear studs. The predictions agree very well with a wide range of test data reported in the literature. (C) 2018 Elsevier Ltd. All rights reserved.
机译:钢混混凝土梁已广泛用于现代建筑业,通常将有头抗剪双头螺栓连接器通过成型钢板焊接,以确保梁和复合板之间的全部/部分复合作用。对于这种复合梁,不同组件之间存在复杂的相互作用,从而导致不同的破坏模式。有限元(FE)分析可用于了解此类梁的基本行为。但是以前的有限元模型采用了各种假设来简化一些复杂相互作用的建模,例如抗剪栓钉与混凝土之间的相互作用。因此,那些有限元模型在捕获某些类型的故障模式方面有局限性。同时,螺栓和异型钢板承受的实际力尚未定量。在这种情况下,本文旨在通过考虑不同构件之间的实际相互作用,抗剪栓钉和型钢板的断裂以及混凝土的拉伸和压缩损伤,为复合钢板组合梁建立详细的有限元模型。所建立的有限元模型可以令人满意地预测复合梁的全范围荷载-变形曲线以及埋入式抗剪栓钉的剪力-滑移关系。这些预测与文献中报道的大量测试数据非常吻合。 (C)2018 Elsevier Ltd.保留所有权利。

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