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Modeling and Behavior of Steel Plate Connections Subject to Various Fire Scenarios

机译:火灾情况下钢板连接的建模和行为

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摘要

Shear connections are common connection types and they are designed to resist only shear loads. In a fire event, the axial restraint provided by adjacent structure creates unanticipated compressive and tensile forces in the beam and thus the connection. Using finite-element models, this study examines single-plate shear connections that are bolted to the beam and welded to the supporting girder. A floor subassembly, which includes the beam, girder, slab, and connection, is modeled so that appropriate forces are applied to the connection. The model is validated with the experiments of bolted lap splice plates at elevated temperatures, as well as full-scale experiments. This paper (1) illustrates efficient modeling methods for these floor subassemblies; (2) evaluates the importance of the slab in the connection response; and (3) examines the effects of the rate of heating and cooling on the connection. The results show that care needs to be taken as to how the concrete slab is represented in the model. The heating and cooling rates affect the beam stress distribution, peak temperatures, and peak displacements, but not the peak beam axial force. Also, the cooling phase creates large tensile forces in the connection which can lead to failure.
机译:剪力连接是常见的连接类型,它们被设计为仅抵抗剪切载荷。在发生火灾时,由相邻结构提供的轴向约束会在梁中产生意外的压缩力和拉力,从而在连接中产生意外的压力。本研究使用有限元模型检查螺栓连接到梁并焊接到支撑梁的单板剪切连接。对地板子组件(包括梁,大梁,平板和连接)进行建模,以便对连接施加适当的力。该模型通过螺栓搭接搭接板在高温下的实验以及全面实验进行了验证。本文(1)说明了这些地板组件的有效建模方法; (2)评估平板在连接响应中的重要性; (3)研究加热和冷却速率对连接的影响。结果表明,需要注意模型中混凝土板的表示方式。加热和冷却速率会影响梁的应力分布,峰值温度和峰值位移,但不会影响梁的轴向峰值力。同样,冷却阶段会在连接中产生较大的拉力,这可能会导致故障。

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