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Seismic performance of curved haunched connections in modularized prefabricated steel structures

机译:模块化预制钢结构中弯曲荷泊连接的地震性能

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In this study, curved haunched connections were developed for modularized prefabricated steel structures, where prefabricated steel pipe columns with curved haunches and H-beams are assembled on-site with connectors and bolts. The seismic performance of the developed connections was investigated, based on a cyclic testing and finite element analysis of two full-scale specimens. Critical seismic performance measures associated with the joints, such as the failure pattern, hysteresis property, stiffness degradation, ductility, and initial rotational stiffness, were analyzed; furthermore, the effectiveness of the different curved haunches in enhancing the seismic performance of the joints was discussed. A comparative analysis based on experimental and numerical tests revealed that the curved haunches could increase the flexural resistance of the steel pipe columns, change the internal stress distribution of the steel H-beams, and enhance the rotational stiffness of the joint. Owing to the existence of the curved haunches, the beam flanges around the haunch ends fail prior to the damage of the Hbeam ends. Connections with shorter haunches are more prone to yielding, owing to the shorter legs of the haunches causing greater stress concentrations in the beam flanges around the haunch ends. In addition, the ductility of the connections crucially hinges on the beam flanges around the haunch ends, where proper strengthening is required to diminish the stress concentrations and section weakening caused by the bolt holes. Both connections can be classified as rigid, and the initial rotational stiffness is related to the length of the curved haunch. This study also presents a theoretical calculation method for the elastic panel zone rotational stiffness. (c) 2020 Elsevier Ltd. All rights reserved.
机译:在这项研究中,开发了用于模块化预制钢结构的弯曲寄出的连接,其中具有弯曲竖齿和H梁的预制钢管柱,用连接器和螺栓组装在现场。基于两种全规模标本的循环测试和有限元分析,研究了开发连接的地震性能。分析了与关节相关的关键地震性能措施,例如故障模式,滞后性能,刚度降解,延展性和初始旋转刚度等临界性能措施;此外,讨论了不同弯曲凸起在提高关节地震性能方面的有效性。基于实验和数值测试的比较分析显示,弯曲的臀部可以提高钢管柱的弯曲电阻,改变钢H梁的内应力分布,并增强关节的旋转刚度。由于存在弯曲的凸起的凸起的凸起,在HAXEAM末端的损坏之前,围绕竖频端的光束凸缘失效。由于凸起的腿部较短,与较短凸起的连接更容易屈服于凸起的腿部围绕HA困境的梁法兰中的更大的应力浓度。另外,连接围绕梁凸缘的连接的延展性在凸起的端部周围的束凸缘上,其中需要适当的强化来减小由螺栓孔引起的应力浓度和部分弱化。两个连接可以被分类为刚性,并且初始旋转刚度与弯曲凸起的长度有关。本研究还提出了一种用于弹性面板区旋转刚度的理论计算方法。 (c)2020 elestvier有限公司保留所有权利。

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