Ductile connection to improve the fire performance of bare-steel and composite frames

IF 0.9 Q4 CONSTRUCTION & BUILDING TECHNOLOGY Journal of Structural Fire Engineering Pub Date : 2021-12-06 DOI:10.1108/jsfe-06-2021-0041
Yu Liu, Shan-Shan Huang, I. Burgess
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引用次数: 2

Abstract

PurposeIn order to improve the robustness of bare-steel and composite structures in fire, a novel axially and rotationally ductile connection has been proposed in this paper.Design/methodology/approachThe component-based models of the bare-steel ductile connection and composite ductile connection have been proposed and incorporated into the software Vulcan to facilitate global frame analysis for performance-based structural fire engineering design. These component-based models are validated against detailed Abaqus FE models and experiments. A series of 2-D bare-steel frame models and 3-D composite frame models with ductile connections, idealised rigid and pinned connections, have been created using Vulcan to compare the fire performance of ductile connection with other connection types in bare-steel and composite structures.FindingsThe comparison results show that the proposed ductile connection can provide excellent ductility to accommodate the axial deformation of connected beam under fire conditions, thus reducing the axial forces generated in the connection and potentially preventing the premature brittle failure of the connection.Originality/valueCompared with conventional connection types, the proposed ductile connection exhibits considerable deformability, and can potentially enhance the robustness of structures in fire.
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延性连接可提高裸钢和复合材料框架的防火性能
目的为了提高裸钢和复合材料结构在火灾中的坚固性,提出了一种新型的轴向和旋转延性连接方法。设计/方法/方法提出了裸钢延性连接和复合延性连接的基于构件的模型,并将其纳入Vulcan软件中,以促进基于性能的结构消防工程设计的整体框架分析。这些基于构件的模型通过详细的Abaqus有限元模型和实验进行了验证。使用Vulcan创建了一系列具有延性连接、理想刚性连接和固定连接的二维裸钢框架模型和三维复合框架模型,以比较延性连接与裸钢和复合结构中其他连接类型的防火性能。对比结果表明,所提出的延性连接可以提供良好的延性,以适应连接梁在火灾条件下的轴向变形,从而减少连接中产生的轴向力,并有可能防止连接的过早脆性破坏。与传统连接类型相比,所提出的延性连接具有相当大的可变形性,并且可以潜在地增强结构在火灾中的坚固性。
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来源期刊
Journal of Structural Fire Engineering
Journal of Structural Fire Engineering CONSTRUCTION & BUILDING TECHNOLOGY-
CiteScore
2.20
自引率
10.00%
发文量
28
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