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The effect of fire loading on a steel frame and connection

机译:火载荷对钢框架和连接的影响

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The objective of this paper is to investigate the behavior of steel shear connections subjected to severe fire loading conditions. A time-history transient FE analysis is used to model the fire loading. A detailed 3D FE model of an extended shear tab steel connection used in a beam-column joint is developed. The shear tab plate is welded to the web of the column and it is connected to the web of the beam by tightened bolts. The change in steel material properties such as the modulus of elasticity, yield and ultimate strength, and the coefficient of thermal expansion are considered as functions of increasing temperature resulting from fire loading. Stress-strain curves for steel at elevated temperatures are used in the model. Two cases of boundary conditions are studied: one representing a roller at the far end of the beam, another assumes that the beam is pin supported. The base of the column is maintained as a fixed support, while the upper edge of the column is free to deflect in the vertical direction as shown in Figure 2. Pre-tensioning loads are modeled to represent the tightening of the bolts. A fire curve based on tests conducted in accordance with ASTM E119, is applied to the connection and the structural members. Results show deflection, rotations, and distortion fields of the structural components for both conventional and new fire resisting steel. Mechanical and thermal plastic strain and stress fields are predicted, documenting yielding, plasticity and ultimate failure in the plate, bolts and structural members. This is a 3D nonlinear model that provides graphical and empirical results for a variety of steel connections that could be used for comparison with established experimental results if available. Design recommendations, failure limitations, and material selection and specifications can be suggested for steel connections in such fire loading.
机译:本文的目的是研究钢剪切连接经受严重的火灾负载条件的行为。时间历史瞬态FE分析用于模拟火灾载荷。开发了在光束柱接头中使用的延长剪切片钢连接的详细3D FE模型。剪切片板焊接到塔的腹板上,并且通过拧紧的螺栓连接到梁的腹板上。钢材的变化如弹性,产率和极限强度的模量,以及热膨胀系数被认为是火灾负荷导致温度的函数。模型中使用升高温度下钢的应力 - 应变曲线。研究了两个边界条件的情况:一个代表梁在光束的远端处的一个,另一个假设梁是支撑的销。塔的底部保持为固定支撑件,而柱的上边缘在垂直方向上可以自由偏转,如图2所示。预张紧载荷被建模以表示螺栓的紧固。基于根据ASTM E119进行的测试的火灾曲线应用于连接和结构构件。结果显示了常规和新型防火钢的结构部件的偏转,旋转和变形场。预测机械和热塑性应变和应力场,在板,螺栓和结构构件中记录屈服,可塑性和最终失效。这是一个3D非线性模型,为各种钢连接提供图形和经验结果,可用于与已建立的实验结果进行比较。可以建议设计建议,故障限制和材料选择和规格在这种火灾负载中的钢连接。

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