Analysis of the Behaviour of Composite Connections in Multi-Storey Buildings Under Earthquake Loading

Aleksa Milijaš
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Abstract

In the past years, number of beams and slabs in steel structures that are executed as composite steel – concrete elements has significantly increased. In moment-resisting frames with composite steel – concrete slabs, slab reinforcement in tensile zone needs to be considered in design of composite steel – concrete beam – to – column connections with steel plates and bolts in tensile zone. However, the number of reinforcement bars that should be taken into account in connection design significantly depends on the effective width of the concrete slab. Moreover, directions for calculation of the effective width of the concrete slab are still not unambiguous as they can be calculated either according to recommendations from Eurocode 4 or Eurocode 8. In this paper, composite connections are briefly explained and main differences between composite steel – concrete beam – to – column connections and corresponding steel connections are summarized. Furthermore, behaviour of a composite steel – concrete beam – to – column connection under bending moment and shear force induced by earthquake loading is investigated using finite element analysis in software package Abaqus. Finally, a parametric study is carried out in order to examine the suitability of two code recommendations for determination of the effective width of concrete slab in case of seismic loading.
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多层建筑中复合材料连接在地震荷载下的行为分析
在过去几年中,钢结构中作为钢-混凝土组合构件的梁和板的数量大幅增加。在采用钢-混凝土组合板的矩抵抗框架中,在设计钢-混凝土组合梁与柱的连接时,需要考虑受拉区的板配筋,并在受拉区使用钢板和螺栓。然而,连接设计中应考虑的钢筋数量在很大程度上取决于混凝土板的有效宽度。此外,混凝土板有效宽度的计算方向仍不明确,因为可以根据欧洲规范 4 或欧洲规范 8 的建议进行计算。本文简要解释了复合连接,并总结了钢-混凝土梁-柱复合连接与相应的钢连接之间的主要区别。此外,本文还使用 Abaqus 软件包中的有限元分析方法,研究了在地震荷载作用下,钢-混凝土梁-柱复合连接在弯矩和剪力作用下的行为。最后,还进行了参数研究,以检验地震荷载情况下确定混凝土板有效宽度的两种规范建议的适用性。
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