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Anti-collapse performance of steel frames with RWS connections under a column removal scenario

机译:在列移除场景下具有RWS连接的钢框架的防塌业性

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摘要

The spread of an initial local failure from load-carrying member to other members in system when subjected to abnormal load, eventually resulting the progressive collapse of an entire structure. This paper presents an experimental and parametric study on the anti-collapse performance of moment resisting frames (MRFs) with reduced-web-section (RWS) connections under critical column removal scenario. Factors influencing robustness and rotational capacity in these connections under Vierendeel failure are analyzed. A total of 14 laboratory tests on steel beam-column connections with complete joint penetrations are presented; one test was conducted with solid beam connections, while the others were designed to have RWS connections with different circular web openings geometric parameters. Comprehensive finite models are then implemented to further interpret the obtained test results. The test results demonstrated that vertical resistance against the applied load atop the failed columns was totally composed of flexural action (FA) in the early stages, and it became catenary action (CA) as the vertical displacement of the failed column increased. There are two typical failure modes, continuous failure in the beam-column joint region generated by the weld line fracture and interrupted failure in RWS connections generated by the fracturing of a perforated section, and the different failure modes determine whether the system can develop meaningful catenary action when the initial fracture occurs. Specimens with openings exhibited multiple peak loads because of the repeated occurrence of local damage in the beam-column connection. RWS connections with local failure near the openings were capable of developing deformability and resistance associated with CA when the dimensions and location parameters of the opening are controlled within a suitable range, and the rotational capacities of these connections were larger than the connection with solid beams.
机译:当经受异常负载时,将初始局部故障从装载构件传播到系统中的其他成员,最终导致整个结构的逐渐崩溃。本文介绍了在关键柱去除场景下具有减少网 - 段(RWS)连接的力矩抵抗框架(MRF)的防塌陷性能的实验和参数研究。分析了Vierendeel失败下这些连接中的鲁棒性和旋转容量的因素。展示了在具有完全关节渗透的钢梁柱连接上共有14个实验室测试;用固体梁连接进行一次测试,而其他测试被设计成具有不同的圆形网开口几何参数的RWS连接。然后实施全面的有限模型以进​​一步解释所获得的测试结果。测试结果表明,在早期阶段的弯曲动作(FA)上完全由弯曲作用(FA)的垂直抗性,并且由于失败柱的垂直位移而变成了凸起的动作(CA)。有两个典型的故障模式,在焊接线断裂产生的光束柱接头区域中连续发生故障,并通过穿孔部分的压裂产生的RWS连接中断的rws连接中断,而不同的故障模式确定系统是否可以开发有意义的关联发生初始骨折时的动作。由于光束柱连接中的局部损坏重复出现,具有开口的标本表现出多个峰值载荷。当开口的尺寸和位置参数控制在合适的范围内时,与开口附近的局部故障的RWS连接能够开发与CA相关的可变形性和电阻,并且这些连接的旋转能力大于与固体梁的连接。

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