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Damage characteristics of thin-walled steel arch bridges subjected to in-plane earthquake action

机译:平面地震作用下薄壁钢拱桥的损伤特征

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Although steel bridges generally demonstrate good seismic performance, local instabilities within steel plates and ultra-low-cycle fatigue (ULCF) damage at welded joints can cast a important effect on the seismic performance of bridge structures. To study the characteristics of the above-mentioned types of damage in steel arch bridges, a non-hinged half-through steel arch bridge was considered as an example, and a refined finite element (FE) model, capable of accounting for local deformation within potentially damaged regions, was established. Based on simulation results concerning elastoplastic seismic response of the entire structure and ULCF damage of welded joints at locations with high strain concentrations, seismic damage characteristics of steel arch bridges and influence of steel-plate thickness of arch ribs on them were analysed. Based on FE analysis, the arch springing and beam-arch junctions were identified as locations transmitting longitudinal seismic loads, thereby suffering maximum seismic damage during in-plane earthquakes. Local deformation of steel plates within damaged areas has a remarkable effect on the overall seismic response of structures, and hence, cannot be ignored. The fibre model does not account for local deformation within steel plates; thus, when steel plates undergo local deformations, the results obtained using the fibre model tend to be misleading and dangerous. An increased steel-plate thickness of arch ribs causes significant improvement in local stability of steel arch bridges. However, this method does not guarantee prevention of ULCF failure, which could occur at welded joints within the structure and must be considered during seismic design. (C) 2018 Elsevier Ltd. All rights reserved.
机译:尽管钢桥通常表现出良好的抗震性能,但钢板内部的局部不稳定性和焊接接头处的超低周疲劳(ULCF)损坏可能对桥梁结构的抗震性能产生重要影响。为了研究钢拱桥中上述类型损伤的特征,以无铰链的半贯通钢拱桥为例,并提出了一种能够解决局部变形的精化有限元模型。建立了潜在损坏的区域。基于关于高应变集中部位的整体结构弹塑性地震响应和焊接接头ULCF损伤的模拟结果,分析了钢拱桥的地震损伤特征以及拱肋的钢板厚度对其的影响。根据有限元分析,将拱形弹簧和梁拱形连接点确定为传递纵向地震荷载的位置,从而在面内地震中遭受最大的地震破坏。受损区域内钢板的局部变形对结构的整体地震响应具有显着影响,因此不可忽略。纤维模型不考虑钢板内的局部变形;因此,当钢板发生局部变形时,使用纤维模型获得的结果往往会产生误导和危险。拱肋钢板厚度的增加导致钢拱桥局部稳定性的显着改善。但是,这种方法不能保证防止ULCF失效,ULCF失效可能发生在结构内的焊接接头处,必须在抗震设计中予以考虑。 (C)2018 Elsevier Ltd.保留所有权利。

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