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Design of Rupture Strength of Side Blocks in Elevated Steel Girder Bridges with Elastomeric Bearings

机译:弹性轴承钢梁桥侧块破裂强度设计

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Elastomeric rubber bearings with side blocks have been extensively used as a seismic response-control device in steel girder bridges in Japan. In real scenarios, the behavior of the girder bridges with elastomeric bearings are usually complex because of the complex mechanism by which the seismically induced inertia forces at concrete deck transmits to the girder bearings. Therefore, it is important to carry out seismic response analysis of a whole bridge system considering the interaction between different structural components in order to check the performance of the side blocks during an event of severe earthquakes. The objectives of the present study are to develop a detailed three-dimensional finite element (FE) model of an elevated girder bridge system and to propose a design rupture strength for the side blocks. The FE-model is constructed based on an existing plate girder bridge considering the effect of concrete slab, girders, stiffeners, rubber bearing, pier and the damage control by the side blocks. A sequence of seismic response analysis is then performed using four different rupture forces of the side blocks by considering the Level-2 design earthquake, the 1995 Kobe earthquake and the 2016 Kumamoto earthquake. The analytical investigation reveals that the side blocks should be designed to withstand a horizontal force of at least 1200 kN in order to prevent the rupture of the side blocks and to mitigate damage of bridge piers. Moreover, the damage to the critical parts of bridge superstructure can be mitigated by strengthening the side blocks. Based on the analysis results, a retrofit plan to strengthen the side blocks of existing girder bridges is proposed.
机译:具有侧块的弹性橡胶轴承已广泛用作日本钢梁桥梁的地震反应控制装置。在实况中,具有弹性体轴承的梁桥的行为通常是复杂的,因为混凝土甲板处的地震诱导的惯性力传递到梁轴承。因此,考虑到不同结构部件之间的相互作用以检查在严重地震期间的侧块的性能,重要的是对整个桥梁系统进行地震反应分析。本研究的目的是开发一个升高的梁桥系统的详细三维有限元(FE)模型,并提出侧块的设计破裂强度。考虑到混凝土板,梁,加强件,橡胶轴承,墩和侧块损坏控制的效果,基于现有的板梁桥构建了FE模型。然后,通过考虑第2级设计地震,1995年神户地震和2016年熊本地震,使用侧块的四个不同破裂力进行地震反应分析序列。分析研究表明,侧块应设计成承受至少1200kn的水平力,以防止侧块的破裂并减轻桥墩的损坏。此外,通过强化侧块可以减轻对桥梁上部结构的关键部件的损坏。基于分析结果,提出了加强现有梁桥侧块的改造计划。

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