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首页> 外文期刊>Steel & Composite Structures: An International Journal >Progressive collapse analysis of stainless steel composite frames with beam-to-column endplate connections
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Progressive collapse analysis of stainless steel composite frames with beam-to-column endplate connections

机译:带光束底板连接的不锈钢复合框架逐步折叠分析

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This paper carries out the progressive collapse analysis of stainless steel composite beam-to-column joint sub-models and moment-resisting frames under column removal scenarios. The static flexural response of composite joint sub-models with damaged columns was initially explored via finite element methods, which was validated by independent experimental results and discussed in terms of moment-rotation relationships, plastic hinge behaviour and catenary actions. Simplified finite element methods were then proposed and applied to the frame analysis which aimed to elaborate the progressive collapse response at the frame level. Nonlinear static and dynamic analysis were employed to evaluate the dynamic increase factor (DIF) for stainless steel composite frames. The results suggest that the catenary action effect plays an important role in preventing the damaged structure from dramatic collapse. The beam-to-column joints could be critical components that influence the capacity of composite frames and dominate the determination of dynamic increase factor. The current design guidance is non-conservative to provide proper DIF for stainless steel composite frames, and thus new DIF curves are expected to be proposed.
机译:本文采用了柱移除场景下的不锈钢复合梁到柱关节子模型和时刻抵抗框架的渐进塌陷分析。最初通过有限元方法探索具有损坏柱的复合接头子模型的静态弯曲响应,其由独立实验结果验证,并根据力矩旋转关系,塑料铰链行为和围网动作讨论。然后提出简化的有限元方法并应用于帧分析,该帧分析旨在详细说明帧级的逐步崩溃响应。采用非线性静态和动态分析来评估不锈钢复合框架的动态增加因子(DIF)。结果表明,膨胀作用效应在防止灾害崩溃中的受损结构中起着重要作用。光束到柱接头可以是影响复合帧容量并主导动态增加因子的确定的关键组分。目前的设计引导是不保守的,以提供不锈钢复合框架的适当差异,因此预计将提出新的DIF曲线。

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