首页> 外文期刊>International journal of steel structures >Progressive Collapse Mechanism Analysis of Concrete-Filled Square Steel Tubular Column to Steel Beam Joint with Bolted-Welded Hybrid Connection
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Progressive Collapse Mechanism Analysis of Concrete-Filled Square Steel Tubular Column to Steel Beam Joint with Bolted-Welded Hybrid Connection

机译:螺栓焊接混合连接混凝土钢管管钢梁梁逐步折叠机理分析

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摘要

When vertical load-bearing members of building structures are subjected to accidental loadings, such as an earthquake, fire or explosion, the remaining structure chiefly relies on the beam mechanism and catenary mechanism of the steel beam as the main resistance capacity, to prevent local or large-scale progressive collapse. This paper presents a three-dimensional finite element model of concrete-filled square steel tubular (CFST) column to steel beam joint with bolted-welded hybrid connection in a middle-column-removal scenario using ABAQUS software. The multi-scale modeling method was employed to calculate the collapse resistance and mechanism under vertical load. The vertical displacement and bearing capacity curve of the middle failure column was calculated and analyzed. The collapse mechanism and bearing capacity contribution of the steel beam tying in different directions are also discussed. Results indicate that the failure mechanism of the process includes the beam mechanism, the translation mechanism, the catenary mechanism and the failure stage. After the short-span steel beam had been destroyed, the long-span steel beam continued to provide collapse resistance capacity. To improve progressive collapse resistance, the CFST column to steel beam joint with welded haunch is proposed in this paper. Comparing the anti-collapse bearing capacity and failure characteristics of the joint with the welded haunch and common joint indicates that the anti-collapse capacity of the joint with welded haunch can be improved, and the research results can be referenced for engineering progressive collapse design.
机译:当建筑物结构的垂直承载构件经受偶然的载荷时,例如地震,火灾或爆炸,其余结构主要依赖于钢梁作为主要电阻容量的梁机构和延伸机构,以防止局部或大规模逐步崩溃。本文介绍了一种使用ABAQUS软件的中柱移除场景中的钢梁接头的混凝土钢管(CFST)柱的三维有限元模型。采用多尺度建模方法计算垂直载荷下的塌陷性和机制。计算并分析了中间失效柱的垂直位移和承载力曲线。还讨论了在不同方向上填充钢梁的折叠机构和承载力贡献。结果表明该方法的失效机制包括梁机构,翻译机构,延绕机构和失效阶段。在破坏短跨度钢梁之后,长跨度钢梁继续提供塌陷电阻。为了提高渐进式塌陷性,本文提出了具有焊接HACHICH的钢梁接头的CFST柱。与焊接Haunch and Common联合的接头的防塌轴承容量和故障特性表明,可以提高焊接HA突出的接头的防塌陷,并且可以参考工程渐进式折叠设计。

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