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首页> 外文期刊>Journal of structural fire engineering >Stability Behavior of Steel Building Structures in Fire Conditions: Role of Composite Floor System with Shear-Tab Connections
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Stability Behavior of Steel Building Structures in Fire Conditions: Role of Composite Floor System with Shear-Tab Connections

机译:火灾条件下钢结构建筑的稳定性行为:带剪切片连接的复合地板系统的作用

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摘要

This paper presents a qualitative assessment of the influence of the composite floor system and shear-tab connections on the stability behavior of a typical mid-rise (10-story) steel building subjected to corner compartment fires. A ten-story steel building with composite floor systems was designed following the design practices in the US. The building had an interior core of reinforced concrete (RC) shear walls to resist the lateral loads. Effects of gravity loads and fire conditions were simulated using the finite element method and numerical analysis techniques. The concrete material model used in the numerical simulations was benchmarked using experimental data from concrete slab thermal tests. The results from the numerical investigations indicated that at elevated temperatures, the composite beam undergoes elongation, sagging and rotation at the beam ends. This results in additional rotation and compression demands on the connections at the ends. The shear-tab connections provided significant negative moment resistance at the beam ends at elevated temperatures. This negative moment resistance at the shear-tab connections increased the flexural capacity of the composite beam by effectively redistributing the moment demands due to the applied gravity loads.
机译:本文提出了定性评估复合地板系统和剪力片连接方式对典型的中层(10层)钢结构房屋在转角火灾时的稳定性能产生的影响。按照美国的设计规范,设计了一座十层高的钢结构复合地板系统。该建筑物的内部核心为钢筋混凝土(RC)剪力墙,以抵抗侧向荷载。使用有限元方法和数值分析技术模拟了重力载荷和火灾条件的影响。数值模拟中使用的混凝土材料模型是根据混凝土楼板热试验的实验数据进行基准测试的。数值研究的结果表明,在高温下,复合梁在梁的端部会发生伸长,下垂和旋转。这在端部的连接上导致额外的旋转和压缩需求。剪力片连接在高温下在梁端提供了显着的负弯矩阻力。通过有效地重新分配由于施加的重力载荷而产生的弯矩要求,在剪力片连接处产生的负弯矩阻力提高了复合梁的抗弯能力。

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