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首页> 外文期刊>Journal of structural engineering >Structural Behavior of CHS T-Joints Subjected to Static In-Plane Bending in Fire Conditions
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Structural Behavior of CHS T-Joints Subjected to Static In-Plane Bending in Fire Conditions

机译:火灾条件下承受平面内静态弯曲的CHS T型接头的结构行为

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Fire resistance of steel joints is always a major concern in the design of steel structures under extremely hazardous conditions. However, for circular hollow section (CHS) joints in fire conditions, little information is available, especially for T-joints. To gain more insight into the static behavior of CHS T-joints in elevated temperatures, experimental and numerical studies were conducted on selected T-joints subjected to in-plane bending. The failure modes and ultimate strength of the joints subjected to different temperatures were investigated and compared to the corresponding joints at ambient conditions. Within the range of investigated parameters, at 700 degrees C, the joint strength was reduced to 22.1% compared to the corresponding joint at ambient temperature. Furthermore, it is observed that at high temperatures, a change occurred in the failure mode of the joints. Cracks formed around the center weld toes before the joints reached excessive deformation, which subsequently affected the joint postyield hardening performance. To understand the initiation of the cracks, a material test was performed. The fracture strains of the heat-affected zone of the chord material beneath the center weld at corresponding temperatures were determined. The fracture strains were included in subsequent finite-element (FE) validation models. The verified finite element analysis models were used to analyze the structural behavior of CHS T-joints at elevated temperatures, such as strain, stress, load path, and effect of fracture strains, to gain insight into the failure mechanism of the joints. (C) 2015 American Society of Civil Engineers.
机译:在极其危险的条件下,钢结构的耐火性一直是钢结构设计中的主要关注点。但是,对于着火情况下的圆形空心截面(CHS)接头,几乎没有可用的信息,尤其是对于T型接头。为了更深入地了解CHS T型接头在高温下的静态行为,对经过平面弯曲的选定T型接头进行了实验和数值研究。研究了在不同温度下接头的破坏模式和极限强度,并将其与环境条件下的相应接头进行了比较。在研究的参数范围内,在700摄氏度下,与环境温度下的相应接头相比,接头强度降低到22.1%。此外,观察到在高温下,接头的失效模式发生了变化。在接头过度变形之前,在中心焊趾周围形成裂纹,这随后影响了接头的屈服后硬化性能。为了理解裂纹的产生,进行了材料测试。确定在相应温度下中心焊缝下方的弦材料的热影响区的断裂应变。断裂应变包含在后续的有限元(FE)验证模型中。经过验证的有限元分析模型用于分析高温下CHS T形接头的结构行为,例如应变,应力,载荷路径和断裂应变的影响,以深入了解接头的破坏机理。 (C)2015年美国土木工程师学会。

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